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Erschienen in: Sports Medicine 7/2006

01.07.2006 | Review Article

The Pathomechanics of Plantar Fasciitis

verfasst von: Dr Scott C. Wearing, James E. Smeathers, Stephen R. Urry, Ewald M. Hennig, Andrew P. Hills

Erschienen in: Sports Medicine | Ausgabe 7/2006

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Abstract

Plantar fasciitis is a musculoskeletal disorder primarily affecting the fascial enthesis. Although poorly understood, the development of plantar fasciitis is thought to have a mechanical origin. In particular, pes planus foot types and lower-limb biomechanics that result in a lowered medial longitudinal arch are thought to create excessive tensile strain within the fascia, producing microscopic tears and chronic inflammation. However, contrary to clinical doctrine, histological evidence does not support this concept, with inflammation rarely observed in chronic plantar fasciitis. Similarly, scientific support for the role of arch mechanics in the development of plantar fasciitis is equivocal, despite an abundance of anecdotal evidence indicating a causal link between arch function and heel pain. This may, in part, reflect the difficulty in measuring arch mechanics in vivo. However, it may also indicate that tensile failure is not a predominant feature in the pathomechanics of plantar fasciitis. Alternative mechanisms including ‘stress-shielding’, vascular and metabolic disturbances, the formation of free radicals, hyperthermia and genetic factors have also been linked to degenerative change in connective tissues. Further research is needed to ascertain the importance of such factors in the development of plantar fasciitis.
Literatur
1.
Zurück zum Zitat Michelson JD. Heel pain: when is it plantar fasciitis? J Musculoskelet Med 1995; 12: 22–26 Michelson JD. Heel pain: when is it plantar fasciitis? J Musculoskelet Med 1995; 12: 22–26
2.
Zurück zum Zitat Taunton JE, Ryan MB, Clement DB, et al. A retrospective case-control analysis of 2002 running injuries. Br J Sports Med 2002; 36: 95–101PubMedCrossRef Taunton JE, Ryan MB, Clement DB, et al. A retrospective case-control analysis of 2002 running injuries. Br J Sports Med 2002; 36: 95–101PubMedCrossRef
3.
Zurück zum Zitat Rome K, Howe T, Haslock I. Risk factors associated with the development of plantar heel pain in athletes. Foot 2001; 11: 119–125CrossRef Rome K, Howe T, Haslock I. Risk factors associated with the development of plantar heel pain in athletes. Foot 2001; 11: 119–125CrossRef
4.
Zurück zum Zitat Rome K. Anthropometric and biomechanical risk factors in the development of plantar heel pain: a review of the literature. Phys Ther Rev 1997; 2: 123–134CrossRef Rome K. Anthropometric and biomechanical risk factors in the development of plantar heel pain: a review of the literature. Phys Ther Rev 1997; 2: 123–134CrossRef
5.
Zurück zum Zitat Atkins D, Crawford F, Edwards J, et al. A systematic review of treatments for the painful heel. Rheumatology 1999; 38: 968–973PubMedCrossRef Atkins D, Crawford F, Edwards J, et al. A systematic review of treatments for the painful heel. Rheumatology 1999; 38: 968–973PubMedCrossRef
6.
Zurück zum Zitat O’Malley MJ, Page A, Cook R. Endoscopic plantar fasciotomy for chronic heel pain. Foot Ankle Int 2000; 21: 505–510PubMed O’Malley MJ, Page A, Cook R. Endoscopic plantar fasciotomy for chronic heel pain. Foot Ankle Int 2000; 21: 505–510PubMed
7.
Zurück zum Zitat Davis PF, Severud E, Baxter DE. Painful heel syndrome: results of nonoperative treatment. Foot Ankle Int 1994; 15: 531–535PubMed Davis PF, Severud E, Baxter DE. Painful heel syndrome: results of nonoperative treatment. Foot Ankle Int 1994; 15: 531–535PubMed
8.
Zurück zum Zitat Wolgin M, Cook C, Graham C, et al. Conservative treatment of plantar heel pain: long-term follow-up. Foot Ankle Int 1994; 15: 97–102PubMed Wolgin M, Cook C, Graham C, et al. Conservative treatment of plantar heel pain: long-term follow-up. Foot Ankle Int 1994; 15: 97–102PubMed
9.
Zurück zum Zitat Martin RL, Irrgang JJ, Conti SF. Outcome study of subjects with insertional plantar fasciitis. Foot Ankle Int 1998; 19: 803–811PubMed Martin RL, Irrgang JJ, Conti SF. Outcome study of subjects with insertional plantar fasciitis. Foot Ankle Int 1998; 19: 803–811PubMed
10.
Zurück zum Zitat Crawford F, Atkins D, Edwards J. Interventions for treating plantar heel pain. Cochrane Database Syst Rev 2000; (3): CD000416PubMed Crawford F, Atkins D, Edwards J. Interventions for treating plantar heel pain. Cochrane Database Syst Rev 2000; (3): CD000416PubMed
11.
Zurück zum Zitat Davies MS, Weiss GA, Saxby TS. Plantar fasciitis: how successful is surgical intervention? Foot Ankle Int 1999; 20: 803–807PubMed Davies MS, Weiss GA, Saxby TS. Plantar fasciitis: how successful is surgical intervention? Foot Ankle Int 1999; 20: 803–807PubMed
12.
Zurück zum Zitat Young CC, Rutherford DS, Niedfeldt MW. Treatment of plantar fasciitis. Am Fam Physician 2001; 63: 467–478PubMed Young CC, Rutherford DS, Niedfeldt MW. Treatment of plantar fasciitis. Am Fam Physician 2001; 63: 467–478PubMed
13.
Zurück zum Zitat Gill LH. Plantar fasciitis: diagnosis and conservative management. J Am Acad Orthop Surg 1997; 5: 109–117PubMed Gill LH. Plantar fasciitis: diagnosis and conservative management. J Am Acad Orthop Surg 1997; 5: 109–117PubMed
14.
Zurück zum Zitat Gill LH, Kiebzak GM. Outcome of nonsurgical treatment for plantar fasciitis. Foot Ankle Int 1996; 17: 527–532PubMed Gill LH, Kiebzak GM. Outcome of nonsurgical treatment for plantar fasciitis. Foot Ankle Int 1996; 17: 527–532PubMed
15.
Zurück zum Zitat Pfeffer G, Bacchetti P, Deland J, et al. Comparison of custom and prefabricated orthoses in the initial treatment of proximal plantar fasciitis. Foot Ankle Int 1999; 20: 214–221PubMed Pfeffer G, Bacchetti P, Deland J, et al. Comparison of custom and prefabricated orthoses in the initial treatment of proximal plantar fasciitis. Foot Ankle Int 1999; 20: 214–221PubMed
16.
Zurück zum Zitat Selth CA, Francis BE. Review of non-functional plantar heel pain. Foot 2000; 10: 97–104CrossRef Selth CA, Francis BE. Review of non-functional plantar heel pain. Foot 2000; 10: 97–104CrossRef
17.
Zurück zum Zitat Barrett SL, O’Malley R. Plantar fasciitis and other causes of heel pain. Am Fam Physician 1999; 59: 2200–2206PubMed Barrett SL, O’Malley R. Plantar fasciitis and other causes of heel pain. Am Fam Physician 1999; 59: 2200–2206PubMed
18.
Zurück zum Zitat Karr SD. Subcalcaneal heel pain. Orthop Clin North Am 1994; 25: 161–175PubMed Karr SD. Subcalcaneal heel pain. Orthop Clin North Am 1994; 25: 161–175PubMed
19.
Zurück zum Zitat Tountas AA, Fornasier VL. Operative treatment of subcalcaneal pain. Clin Orthop 1996; 332: 170–178PubMedCrossRef Tountas AA, Fornasier VL. Operative treatment of subcalcaneal pain. Clin Orthop 1996; 332: 170–178PubMedCrossRef
21.
Zurück zum Zitat Gibbon WW, Long G. Ultrasound of the plantar aponeurosis (fascia). Skeletal Radiol 1999; 28: 21–26PubMedCrossRef Gibbon WW, Long G. Ultrasound of the plantar aponeurosis (fascia). Skeletal Radiol 1999; 28: 21–26PubMedCrossRef
22.
Zurück zum Zitat Schroeder BM. American College of Foot and Ankle Surgeons: the diagnosis and treatment of heel pain. Am Fam Physician 2002; 65: 1686–1688PubMed Schroeder BM. American College of Foot and Ankle Surgeons: the diagnosis and treatment of heel pain. Am Fam Physician 2002; 65: 1686–1688PubMed
23.
Zurück zum Zitat McGonagle D, Marzo-Ortega H, O’Connor P, et al. The role of biomechanical factors and HLA-B27 in magnetic resonance imaging-determined bone changes in plantar fascia en-thesopathy. Arthritis Rheum 2002; 46: 489–493PubMedCrossRef McGonagle D, Marzo-Ortega H, O’Connor P, et al. The role of biomechanical factors and HLA-B27 in magnetic resonance imaging-determined bone changes in plantar fascia en-thesopathy. Arthritis Rheum 2002; 46: 489–493PubMedCrossRef
24.
Zurück zum Zitat Mitchell IR, Meyer C, Krueger WA. Deep fascia of the foot: anatomical and clinical considerations. J Am Podiatr Med Assoc 1991; 81: 373–378PubMed Mitchell IR, Meyer C, Krueger WA. Deep fascia of the foot: anatomical and clinical considerations. J Am Podiatr Med Assoc 1991; 81: 373–378PubMed
25.
Zurück zum Zitat Sarrafian SK. Anatomy of the foot and ankle: descriptive, topographic, functional. New York: JB Lippincott Company, 1983 Sarrafian SK. Anatomy of the foot and ankle: descriptive, topographic, functional. New York: JB Lippincott Company, 1983
26.
Zurück zum Zitat Newell SG, Miller SJ. Conservative treatment of plantar fascial strain. Phys Sportsmed 1977; 5: 68–73 Newell SG, Miller SJ. Conservative treatment of plantar fascial strain. Phys Sportsmed 1977; 5: 68–73
27.
Zurück zum Zitat Hedrick MR. The plantar aponeurosis. Foot Ankle Int 1996; 17: 646–649PubMed Hedrick MR. The plantar aponeurosis. Foot Ankle Int 1996; 17: 646–649PubMed
28.
Zurück zum Zitat Kaya BK. Plantar fasciitis in athletes. J Sport Rehabil 1996; 5: 305–320 Kaya BK. Plantar fasciitis in athletes. J Sport Rehabil 1996; 5: 305–320
29.
Zurück zum Zitat Cralley JC, Schuberth JM, Fitch KL. The deep band of the plantar aponeurosis of the human foot. Anat Anz 1982; 152: 189–197PubMed Cralley JC, Schuberth JM, Fitch KL. The deep band of the plantar aponeurosis of the human foot. Anat Anz 1982; 152: 189–197PubMed
30.
Zurück zum Zitat Hiramoto Y. Shape of the fibular part of the plantar aponeurosis in Japanese. Okajimas Folia Anat Jpn 1983; 60: 329–337PubMed Hiramoto Y. Shape of the fibular part of the plantar aponeurosis in Japanese. Okajimas Folia Anat Jpn 1983; 60: 329–337PubMed
31.
Zurück zum Zitat Dylevský I. Connective tissues of the hand and foot. Acta Univ Carol Med Monogr 1988; 127: 5–195PubMed Dylevský I. Connective tissues of the hand and foot. Acta Univ Carol Med Monogr 1988; 127: 5–195PubMed
32.
Zurück zum Zitat Draves DJ. Anatomy of the lower extremity. Baltimore (MD): Williams and Wilkins, 1986 Draves DJ. Anatomy of the lower extremity. Baltimore (MD): Williams and Wilkins, 1986
33.
Zurück zum Zitat Pontious J, Flanigan KP, Hillstrom HJ. Role of the plantar fascia in digital stabilization: a case report. J Am Podiatr Med Assoc 1996; 86: 43–47PubMed Pontious J, Flanigan KP, Hillstrom HJ. Role of the plantar fascia in digital stabilization: a case report. J Am Podiatr Med Assoc 1996; 86: 43–47PubMed
34.
Zurück zum Zitat Waller Jr JF, Maddalo A. The foot and ankle linkage system. In: Nicholas JA, Hershman EB, editors. The lower extremity and spine in sports medicine. St Louis (MO): CV Mosby, 1986: 413 Waller Jr JF, Maddalo A. The foot and ankle linkage system. In: Nicholas JA, Hershman EB, editors. The lower extremity and spine in sports medicine. St Louis (MO): CV Mosby, 1986: 413
35.
Zurück zum Zitat Viel E, Esnault M. The effect of increased tension in the plantar fascia: a biomechanical analysis. Physiother Theory Pract 1989; 5: 69–73 Viel E, Esnault M. The effect of increased tension in the plantar fascia: a biomechanical analysis. Physiother Theory Pract 1989; 5: 69–73
36.
Zurück zum Zitat Snow SW, Bohne WH, DiCarlo E, et al. Anatomy of the Achilles tendon and plantar fascia in relation to the calcaneus in various age groups. Foot Ankle Int 1995; 16: 418–421PubMed Snow SW, Bohne WH, DiCarlo E, et al. Anatomy of the Achilles tendon and plantar fascia in relation to the calcaneus in various age groups. Foot Ankle Int 1995; 16: 418–421PubMed
37.
Zurück zum Zitat Hawkins BJ, Langermen RJ, Gibbons T, et al. An anatomic analysis of endoscopic plantar fascia release. Foot Ankle Int 1995; 16: 552–558PubMed Hawkins BJ, Langermen RJ, Gibbons T, et al. An anatomic analysis of endoscopic plantar fascia release. Foot Ankle Int 1995; 16: 552–558PubMed
38.
Zurück zum Zitat Thordarson DB, Kumar PJ, Hedman TP, et al. Effect of partial versus complete plantar fasciotomy on the windlass mechanism. Foot Ankle Int 1997; 18: 16–20PubMed Thordarson DB, Kumar PJ, Hedman TP, et al. Effect of partial versus complete plantar fasciotomy on the windlass mechanism. Foot Ankle Int 1997; 18: 16–20PubMed
39.
Zurück zum Zitat Bojsen-Møller F, Flagstad KE. Plantar aponeurosis and internal architecture of the ball of the foot. J Anat 1976; 121: 599–611PubMed Bojsen-Møller F, Flagstad KE. Plantar aponeurosis and internal architecture of the ball of the foot. J Anat 1976; 121: 599–611PubMed
40.
Zurück zum Zitat Stainsby GD. Pathological anatomy and dynamic effect of the displaced plantar plate and the importance of the integrity of the plantar plate-deep transverse metatarsal ligament tie-bar. Ann R Coll Surg Engl 1997; 79: 58–68PubMed Stainsby GD. Pathological anatomy and dynamic effect of the displaced plantar plate and the importance of the integrity of the plantar plate-deep transverse metatarsal ligament tie-bar. Ann R Coll Surg Engl 1997; 79: 58–68PubMed
41.
Zurück zum Zitat Deland JT, Lee KT, Sobel M, et al. Anatomy of the plantar plate and its attachments in the lesser metatarsal phalangeal joint. Foot Ankle Int 1995; 16: 480–486PubMed Deland JT, Lee KT, Sobel M, et al. Anatomy of the plantar plate and its attachments in the lesser metatarsal phalangeal joint. Foot Ankle Int 1995; 16: 480–486PubMed
42.
Zurück zum Zitat Manoli A, Weber TG. Fasciotomy of the foot: an anatomical study with special reference to release of the calcaneal compartment. Foot Ankle 1990; 10: 267–275PubMed Manoli A, Weber TG. Fasciotomy of the foot: an anatomical study with special reference to release of the calcaneal compartment. Foot Ankle 1990; 10: 267–275PubMed
43.
Zurück zum Zitat Martin BF. Observations on the muscles and tendons of the medial aspect of the sole of the foot. J Anat 1964; 98: 437–453PubMed Martin BF. Observations on the muscles and tendons of the medial aspect of the sole of the foot. J Anat 1964; 98: 437–453PubMed
44.
Zurück zum Zitat Boabighi A, Kuhlmann JN, Luboinski J, et al. Aponeuroses and superficial fascia: mechanical and structural properties [in French]. Bull Assoc Anat (Nancy) 1993; 77: 3–7 Boabighi A, Kuhlmann JN, Luboinski J, et al. Aponeuroses and superficial fascia: mechanical and structural properties [in French]. Bull Assoc Anat (Nancy) 1993; 77: 3–7
45.
Zurück zum Zitat Wright DG, Rennels DC. A study of the elastic properties of plantar fascia. J Bone Joint Surg Am 1964; 46: 482–492PubMed Wright DG, Rennels DC. A study of the elastic properties of plantar fascia. J Bone Joint Surg Am 1964; 46: 482–492PubMed
46.
Zurück zum Zitat Amiel D, Frank C, Harwood F, et al. Tendons and ligaments: a morphological and biochemical comparison. J Orthop Res 1984; 1: 257–265PubMedCrossRef Amiel D, Frank C, Harwood F, et al. Tendons and ligaments: a morphological and biochemical comparison. J Orthop Res 1984; 1: 257–265PubMedCrossRef
47.
Zurück zum Zitat Davis WH, Sobel M, DiCarlo EF, et al. Gross, histological, and microvascular anatomy and biomechanical testing of the spring ligament complex. Foot Ankle Int 1996; 17: 95–102PubMed Davis WH, Sobel M, DiCarlo EF, et al. Gross, histological, and microvascular anatomy and biomechanical testing of the spring ligament complex. Foot Ankle Int 1996; 17: 95–102PubMed
48.
Zurück zum Zitat Contri MB, Guerra D, Vignali N, et al. Ultrastructural and immunocytochemical study on normal human palmar aponeuroses. Anat Rec 1994; 240: 314–321PubMedCrossRef Contri MB, Guerra D, Vignali N, et al. Ultrastructural and immunocytochemical study on normal human palmar aponeuroses. Anat Rec 1994; 240: 314–321PubMedCrossRef
49.
Zurück zum Zitat Waggett AD, Ralphs JR, Kwan AP, et al. Characterization of collagens and proteoglycans at the insertion of the human Achilles tendon. Matrix Biol 1998; 16: 457–470PubMedCrossRef Waggett AD, Ralphs JR, Kwan AP, et al. Characterization of collagens and proteoglycans at the insertion of the human Achilles tendon. Matrix Biol 1998; 16: 457–470PubMedCrossRef
50.
Zurück zum Zitat Warren BL. Plantar fasciitis in runners: treatment and prevention. Sports Med 1990; 10: 338–345PubMedCrossRef Warren BL. Plantar fasciitis in runners: treatment and prevention. Sports Med 1990; 10: 338–345PubMedCrossRef
51.
Zurück zum Zitat McNeilly CM, Banes AJ, Benjamin M, et al. Tendon cells in vivo form a three dimensional network of cell processes linked by gap junctions. J Anat 1996; 189: 593–600PubMed McNeilly CM, Banes AJ, Benjamin M, et al. Tendon cells in vivo form a three dimensional network of cell processes linked by gap junctions. J Anat 1996; 189: 593–600PubMed
52.
Zurück zum Zitat Ralphs JR, Benjamin M, Waggett AD, et al. Regional differences in cell shape and gap junction expression in rat Achilles tendon: relation to fibrocartilage differentiation. J Anat 1998; 193: 215–222PubMedCrossRef Ralphs JR, Benjamin M, Waggett AD, et al. Regional differences in cell shape and gap junction expression in rat Achilles tendon: relation to fibrocartilage differentiation. J Anat 1998; 193: 215–222PubMedCrossRef
53.
Zurück zum Zitat Benjamin M, Ralphs JR. The cell and developmental biology of tendons and ligaments. Int Rev Cytol 2000; 196: 85–130PubMedCrossRef Benjamin M, Ralphs JR. The cell and developmental biology of tendons and ligaments. Int Rev Cytol 2000; 196: 85–130PubMedCrossRef
54.
Zurück zum Zitat Petrie S, Collins JG, Solomonow M, et al. Mechanoreceptors in the human elbow ligaments. J Hand Surg [Am] 1998; 23-A: 512–518CrossRef Petrie S, Collins JG, Solomonow M, et al. Mechanoreceptors in the human elbow ligaments. J Hand Surg [Am] 1998; 23-A: 512–518CrossRef
56.
Zurück zum Zitat Petrie S, Collins J, Solomonow M, et al. Mechanoreceptors in the palmar wrist ligaments. J Bone Joint Surg Br 1997; 79: 494–496PubMedCrossRef Petrie S, Collins J, Solomonow M, et al. Mechanoreceptors in the palmar wrist ligaments. J Bone Joint Surg Br 1997; 79: 494–496PubMedCrossRef
57.
Zurück zum Zitat McDougall JJ, Bray RC, Sharkey KA. Morphological and immunohistochemical examination of nerves in normal and injured collateral ligaments of rat, rabbit, and human knee joints. Anat Rec 1997; 248: 29–39PubMedCrossRef McDougall JJ, Bray RC, Sharkey KA. Morphological and immunohistochemical examination of nerves in normal and injured collateral ligaments of rat, rabbit, and human knee joints. Anat Rec 1997; 248: 29–39PubMedCrossRef
58.
Zurück zum Zitat Butler DL, Sheh MY, Stouffer DC, et al. Surface strain variation in human patellar tendon and knee cruciate ligaments. J Biomech Eng 1990; 112: 38–45PubMedCrossRef Butler DL, Sheh MY, Stouffer DC, et al. Surface strain variation in human patellar tendon and knee cruciate ligaments. J Biomech Eng 1990; 112: 38–45PubMedCrossRef
59.
Zurück zum Zitat Noyes FR, Butler DL, Grood ES, et al. Biomechanical analysis of human ligament grafts used in knee-ligament repairs and reconstructions. J Bone Joint Surg Am 1984; 66: 344–352PubMed Noyes FR, Butler DL, Grood ES, et al. Biomechanical analysis of human ligament grafts used in knee-ligament repairs and reconstructions. J Bone Joint Surg Am 1984; 66: 344–352PubMed
60.
Zurück zum Zitat Stouffer DC, Butler DL, Hosny D. The relationship between crimp pattern and mechanical response of human patellar tend on-bone units. J Biomech Eng 1985; 107: 158–165PubMedCrossRef Stouffer DC, Butler DL, Hosny D. The relationship between crimp pattern and mechanical response of human patellar tend on-bone units. J Biomech Eng 1985; 107: 158–165PubMedCrossRef
61.
Zurück zum Zitat Coggeshall RE, Hong KA, Langford LA, et al. Discharge characteristics of fine medial articular afferents at rest and during passive movements of inflamed knee joints. Brain Res 1983; 272: 185–188PubMedCrossRef Coggeshall RE, Hong KA, Langford LA, et al. Discharge characteristics of fine medial articular afferents at rest and during passive movements of inflamed knee joints. Brain Res 1983; 272: 185–188PubMedCrossRef
62.
Zurück zum Zitat Biedert RM, Stauffer E, Friederich NF. Occurrence of free nerve endings in the soft tissue of the knee joint: a histologic investigation. Am J Sports Med 1992; 20: 430–433PubMedCrossRef Biedert RM, Stauffer E, Friederich NF. Occurrence of free nerve endings in the soft tissue of the knee joint: a histologic investigation. Am J Sports Med 1992; 20: 430–433PubMedCrossRef
63.
Zurück zum Zitat Hogervorst T, Brand RA. Mechanoreceptors in joint function. J Bone Joint Surg Am 1998; 80: 1365–1378PubMed Hogervorst T, Brand RA. Mechanoreceptors in joint function. J Bone Joint Surg Am 1998; 80: 1365–1378PubMed
64.
Zurück zum Zitat Holzer P. Local effector functions of capsaicin-sensitive sensory nerve endings: involvement of tachykinins, calcitonin gene-related peptide and other neuropeptides. Neuroscience 1988; 24: 739–768PubMedCrossRef Holzer P. Local effector functions of capsaicin-sensitive sensory nerve endings: involvement of tachykinins, calcitonin gene-related peptide and other neuropeptides. Neuroscience 1988; 24: 739–768PubMedCrossRef
65.
Zurück zum Zitat Salo PT, Theriault E. Number, distribution and neuropeptide content of rat knee joint afferents. J Anat 1997; 190: 515–522PubMedCrossRef Salo PT, Theriault E. Number, distribution and neuropeptide content of rat knee joint afferents. J Anat 1997; 190: 515–522PubMedCrossRef
66.
Zurück zum Zitat Mosier SM, Lucas DR, Pomeroy G, et al. Pathology of the posterior tibial tendon in posterior tibial tendon insufficiency. Foot Ankle Int 1998; 19: 520–524PubMed Mosier SM, Lucas DR, Pomeroy G, et al. Pathology of the posterior tibial tendon in posterior tibial tendon insufficiency. Foot Ankle Int 1998; 19: 520–524PubMed
67.
Zurück zum Zitat Benjamin M, Ralphs JR. Tendons and ligaments: an overview. Histol Histopathol 1997; 12: 1135–1144PubMed Benjamin M, Ralphs JR. Tendons and ligaments: an overview. Histol Histopathol 1997; 12: 1135–1144PubMed
68.
Zurück zum Zitat Ahmed IM, Lagopoulos M, McConnell P, et al. Blood supply of the Achilles tendon. J Orthop Res 1998; 16: 591–596PubMedCrossRef Ahmed IM, Lagopoulos M, McConnell P, et al. Blood supply of the Achilles tendon. J Orthop Res 1998; 16: 591–596PubMedCrossRef
69.
Zurück zum Zitat Frey C, Shereff M, Greenidge N. Vascularity of the posterior tibial tendon. J Bone Joint Surg Am 1990; 72: 884–888PubMed Frey C, Shereff M, Greenidge N. Vascularity of the posterior tibial tendon. J Bone Joint Surg Am 1990; 72: 884–888PubMed
70.
Zurück zum Zitat Benjamin M, Ralphs JR. Fibrocartilage in tendons and ligaments: an adaptation to compressive load. J Anat 1998; 193: 481–494PubMedCrossRef Benjamin M, Ralphs JR. Fibrocartilage in tendons and ligaments: an adaptation to compressive load. J Anat 1998; 193: 481–494PubMedCrossRef
71.
Zurück zum Zitat Bray RC, Rangayyan RM, Frank CB. Normal and healing ligament vascularity: a quantitative histological assessment in the adult rabbit medial collateral ligament. J Anat 1996; 188: 87–95PubMed Bray RC, Rangayyan RM, Frank CB. Normal and healing ligament vascularity: a quantitative histological assessment in the adult rabbit medial collateral ligament. J Anat 1996; 188: 87–95PubMed
72.
Zurück zum Zitat Petersen W, Hohmann G, Stein V, et al. The blood supply of the posterior tibial tendon. J Bone Joint Surg Br 2002; 84: 141–144PubMedCrossRef Petersen W, Hohmann G, Stein V, et al. The blood supply of the posterior tibial tendon. J Bone Joint Surg Br 2002; 84: 141–144PubMedCrossRef
73.
Zurück zum Zitat Chowdhury P, Matyas JR, Frank CB. The ‘epiligament’ of the rabbit medial collateral ligament: a quantitative morphological study. Connect Tissue Res 1991; 27: 33–50PubMedCrossRef Chowdhury P, Matyas JR, Frank CB. The ‘epiligament’ of the rabbit medial collateral ligament: a quantitative morphological study. Connect Tissue Res 1991; 27: 33–50PubMedCrossRef
74.
Zurück zum Zitat Åström M. Laser Doppler flowmetry in the assessment of tendon blood flow. Scand J Med Sci Sports 2000; 10: 365–367PubMedCrossRef Åström M. Laser Doppler flowmetry in the assessment of tendon blood flow. Scand J Med Sci Sports 2000; 10: 365–367PubMedCrossRef
75.
Zurück zum Zitat Petersen W, Bobka T, Stein V, et al. Blood supply of the peroneal tendons: injection and immunohistochemical studies of cadaver tendons. Acta Orthop Scand 2000; 71: 168–174PubMedCrossRef Petersen W, Bobka T, Stein V, et al. Blood supply of the peroneal tendons: injection and immunohistochemical studies of cadaver tendons. Acta Orthop Scand 2000; 71: 168–174PubMedCrossRef
76.
Zurück zum Zitat Arnoczky SP, Rubin RM, Marshall JL. Microvasculature of the cruciate ligaments and its response to injury: an experimental study in dogs. J Bone Joint Surg Am 1979; 61: 1221–1229PubMed Arnoczky SP, Rubin RM, Marshall JL. Microvasculature of the cruciate ligaments and its response to injury: an experimental study in dogs. J Bone Joint Surg Am 1979; 61: 1221–1229PubMed
77.
Zurück zum Zitat Benjamin M, Evans EJ, Copp L. The histology of tendon attachments to bone in man. J Anat 1986; 149: 89–100PubMed Benjamin M, Evans EJ, Copp L. The histology of tendon attachments to bone in man. J Anat 1986; 149: 89–100PubMed
78.
Zurück zum Zitat Scapinelli R. Vascular anatomy of the human cruciate ligaments and surrounding structures. Clin Anat 1997; 10: 151–162PubMedCrossRef Scapinelli R. Vascular anatomy of the human cruciate ligaments and surrounding structures. Clin Anat 1997; 10: 151–162PubMedCrossRef
79.
Zurück zum Zitat Carr AJ, Norris SH. The blood supply of the calcaneal tendon. J Bone Joint Surg Br 1989; 71: 100–101PubMed Carr AJ, Norris SH. The blood supply of the calcaneal tendon. J Bone Joint Surg Br 1989; 71: 100–101PubMed
80.
Zurück zum Zitat Petersen W, Tillmann B. Structure and vascularization of the cruciate ligaments of the human knee joint. Anat Erribryol 1999; 200: 325–334CrossRef Petersen W, Tillmann B. Structure and vascularization of the cruciate ligaments of the human knee joint. Anat Erribryol 1999; 200: 325–334CrossRef
81.
Zurück zum Zitat Petersen W, Stein V, Bobka T. Structure of the human tibialis anterior tendon. J Anat 2000; 197: 617–625PubMedCrossRef Petersen W, Stein V, Bobka T. Structure of the human tibialis anterior tendon. J Anat 2000; 197: 617–625PubMedCrossRef
82.
Zurück zum Zitat Brooks CH, Revell WJ, Heatley FW. A quantitative histological study of the vascularity of the rotator cuff tendon. J Bone Joint Surg Br 1992; 74: 151–153PubMed Brooks CH, Revell WJ, Heatley FW. A quantitative histological study of the vascularity of the rotator cuff tendon. J Bone Joint Surg Br 1992; 74: 151–153PubMed
83.
Zurück zum Zitat Geppert MJ, Sobel M, Hannafin JA. Microvasculature of the tibialis anterior tendon. Foot Ankle 1993; 14: 261–264PubMed Geppert MJ, Sobel M, Hannafin JA. Microvasculature of the tibialis anterior tendon. Foot Ankle 1993; 14: 261–264PubMed
84.
Zurück zum Zitat Schneeberger AG, Masquelet AC. Arterial vascularization of the proximal extensor carpi radialis brevis tendon. Clin Orthop 2002; 398: 239–244PubMedCrossRef Schneeberger AG, Masquelet AC. Arterial vascularization of the proximal extensor carpi radialis brevis tendon. Clin Orthop 2002; 398: 239–244PubMedCrossRef
85.
Zurück zum Zitat Archambault JM, Wiley JP, Bray RC. Exercise loading of tendons and the development of overuse injuries: a review of current literature. Sports Med 1995; 20: 77–89PubMedCrossRef Archambault JM, Wiley JP, Bray RC. Exercise loading of tendons and the development of overuse injuries: a review of current literature. Sports Med 1995; 20: 77–89PubMedCrossRef
86.
Zurück zum Zitat Theodorou DJ, Theodorou SJ, Farooki S, et al. Disorders of the plantar aponeurosis: a spectrum of MR imaging findings. Am J Roentgenol 2001; 176: 97–104 Theodorou DJ, Theodorou SJ, Farooki S, et al. Disorders of the plantar aponeurosis: a spectrum of MR imaging findings. Am J Roentgenol 2001; 176: 97–104
87.
Zurück zum Zitat Woo S, Maynard J, Butler D, et al. Ligament, tendon, and joint capsule insertions to bone. In: Woo SL, Buckwalter JA, editors. Injury and repair of the musculoskeletal soft tissues. Park Ridge (IL): American Academy of Orthopedic Surgeons, 1987: 133–166 Woo S, Maynard J, Butler D, et al. Ligament, tendon, and joint capsule insertions to bone. In: Woo SL, Buckwalter JA, editors. Injury and repair of the musculoskeletal soft tissues. Park Ridge (IL): American Academy of Orthopedic Surgeons, 1987: 133–166
88.
Zurück zum Zitat Benjamin M, McGonagle D. The anatomical basis for disease localisation in seronegative spondyloarthropathy at entheses and related sites. J Anat 2001; 199: 503–526PubMedCrossRef Benjamin M, McGonagle D. The anatomical basis for disease localisation in seronegative spondyloarthropathy at entheses and related sites. J Anat 2001; 199: 503–526PubMedCrossRef
89.
Zurück zum Zitat McGonagle D, Marzo-Ortega H, O’Connor P, et al. Histological assessment of the early enthesitis lesion in spondyloarthropathy. Ann Rheum Dis 2002; 61: 534–537PubMedCrossRef McGonagle D, Marzo-Ortega H, O’Connor P, et al. Histological assessment of the early enthesitis lesion in spondyloarthropathy. Ann Rheum Dis 2002; 61: 534–537PubMedCrossRef
90.
Zurück zum Zitat Cooper RR, Misol S. Tendon and ligament insertion: a light and electron microscopic study. J Bone Joint Surg Am 1970; 52: 1–20PubMed Cooper RR, Misol S. Tendon and ligament insertion: a light and electron microscopic study. J Bone Joint Surg Am 1970; 52: 1–20PubMed
91.
Zurück zum Zitat Rufai A, Ralphs JR, Benjamin M. Structure and histopathology of the insertional region of the human Achilles tendon. J Orthop Res 1995; 13: 585–593PubMedCrossRef Rufai A, Ralphs JR, Benjamin M. Structure and histopathology of the insertional region of the human Achilles tendon. J Orthop Res 1995; 13: 585–593PubMedCrossRef
92.
Zurück zum Zitat Merkel KH, Hess H, Kurtz M. Insertion tendopathy in athletes: a light microscopic, histochemical and electron microscopic examination. Pathol Res Pract 1982; 173: 303–309PubMedCrossRef Merkel KH, Hess H, Kurtz M. Insertion tendopathy in athletes: a light microscopic, histochemical and electron microscopic examination. Pathol Res Pract 1982; 173: 303–309PubMedCrossRef
93.
Zurück zum Zitat Rufai A, Ralphs JR, Benjamin M. Ultrastructure of fibrocartilages at the insertion of the rat Achilles tendon. J Anat 1996; 189: 185–191PubMed Rufai A, Ralphs JR, Benjamin M. Ultrastructure of fibrocartilages at the insertion of the rat Achilles tendon. J Anat 1996; 189: 185–191PubMed
94.
Zurück zum Zitat Milz S, Rufai A, Buettner A, et al. Three-dimensional reconstructions of the Achilles tendon insertion in man. J Anat 2002; 200: 145–152PubMedCrossRef Milz S, Rufai A, Buettner A, et al. Three-dimensional reconstructions of the Achilles tendon insertion in man. J Anat 2002; 200: 145–152PubMedCrossRef
95.
Zurück zum Zitat Gao J, Messner K. Quantitative comparison of soft tissue-bone interface at chondral ligament insertions in the rabbit knee joint. J Anat 1996; 188: 367–373PubMed Gao J, Messner K. Quantitative comparison of soft tissue-bone interface at chondral ligament insertions in the rabbit knee joint. J Anat 1996; 188: 367–373PubMed
96.
Zurück zum Zitat Evans EJ, Benjamin M, Pemberton DJ. Variations in the amount of calcified tissue at the attachments of the quadriceps tendon and patellar ligament in man. J Anat 1991; 174: 145–151PubMed Evans EJ, Benjamin M, Pemberton DJ. Variations in the amount of calcified tissue at the attachments of the quadriceps tendon and patellar ligament in man. J Anat 1991; 174: 145–151PubMed
97.
Zurück zum Zitat Benjamin M, Evans EJ, Rao RD, et al. Quantitative differences in the histology of the attachment zones of the meniscal horns in the knee joint of man. J Anat 1991; 177: 127–134PubMed Benjamin M, Evans EJ, Rao RD, et al. Quantitative differences in the histology of the attachment zones of the meniscal horns in the knee joint of man. J Anat 1991; 177: 127–134PubMed
98.
Zurück zum Zitat Gao J, Rasanen T, Persliden J, et al. The morphology of ligament insertions after failure at low strain velocity: an evaluation of ligament entheses in the rabbit knee. J Anat 1996; 189: 127–133PubMed Gao J, Rasanen T, Persliden J, et al. The morphology of ligament insertions after failure at low strain velocity: an evaluation of ligament entheses in the rabbit knee. J Anat 1996; 189: 127–133PubMed
99.
Zurück zum Zitat Benjamin M, Newell RL, Evans EJ, et al. The structure of the insertions of the tendons of biceps brachii, triceps and brachial -is in elderly dissecting room cadavers. J Anat 1992; 180: 327–332PubMed Benjamin M, Newell RL, Evans EJ, et al. The structure of the insertions of the tendons of biceps brachii, triceps and brachial -is in elderly dissecting room cadavers. J Anat 1992; 180: 327–332PubMed
100.
Zurück zum Zitat Mente PL, Lewis JL. Elastic modulus of calcified cartilage is an order of magnitude less than that of subchondral bone. J Orthop Res 1994; 12: 637–647PubMedCrossRef Mente PL, Lewis JL. Elastic modulus of calcified cartilage is an order of magnitude less than that of subchondral bone. J Orthop Res 1994; 12: 637–647PubMedCrossRef
101.
Zurück zum Zitat Shea JE, Hallows RK, Bloebaum RD. Experimental confirmation of the sheep model for studying the role of calcified fibrocartilage in hip fractures and tendon attachments. Anat Rec 2002; 266: 177–183PubMedCrossRef Shea JE, Hallows RK, Bloebaum RD. Experimental confirmation of the sheep model for studying the role of calcified fibrocartilage in hip fractures and tendon attachments. Anat Rec 2002; 266: 177–183PubMedCrossRef
102.
Zurück zum Zitat Vajda EG, Bloebaum RD. Age-related hypermineralization in the female proximal human femur. Anat Rec 1999; 255: 202–211PubMedCrossRef Vajda EG, Bloebaum RD. Age-related hypermineralization in the female proximal human femur. Anat Rec 1999; 255: 202–211PubMedCrossRef
103.
Zurück zum Zitat Boyde A, Jones SJ, Aerssens J, et al. Mineral density quantitation of the human cortical iliac crest by backscattered electron image analysis: variations with age, sex, and degree of osteoarthritis. Bone 1995; 16: 619–627PubMedCrossRef Boyde A, Jones SJ, Aerssens J, et al. Mineral density quantitation of the human cortical iliac crest by backscattered electron image analysis: variations with age, sex, and degree of osteoarthritis. Bone 1995; 16: 619–627PubMedCrossRef
104.
Zurück zum Zitat Matheson GO, Maclntyre JG, Taunton JE, et al. Musculoskeletal injuries associated with physical activity in older adults. Med Sci Sports Exerc 1989; 21: 379–385PubMed Matheson GO, Maclntyre JG, Taunton JE, et al. Musculoskeletal injuries associated with physical activity in older adults. Med Sci Sports Exerc 1989; 21: 379–385PubMed
105.
Zurück zum Zitat Evans EJ, Benjamin M, Pemberton DJ. Fibrocartilage in the attachment zones of the quadriceps tendon and patellar ligament of man. J Anat 1990; 171: 155–162PubMed Evans EJ, Benjamin M, Pemberton DJ. Fibrocartilage in the attachment zones of the quadriceps tendon and patellar ligament of man. J Anat 1990; 171: 155–162PubMed
106.
Zurück zum Zitat Frowen P, Benjamin M. Variations in the quality of uncalcified fibrocartilage at the insertions of the extrinsic calf muscles in the foot. J Anat 1995; 186: 417–421PubMed Frowen P, Benjamin M. Variations in the quality of uncalcified fibrocartilage at the insertions of the extrinsic calf muscles in the foot. J Anat 1995; 186: 417–421PubMed
107.
Zurück zum Zitat Milz S, Putz R, Ralphs JR, et al. Fibrocartilage in the extensor tendons of the human metacarpophalangeal joints. Anat Rec 1999; 256: 139–145PubMedCrossRef Milz S, Putz R, Ralphs JR, et al. Fibrocartilage in the extensor tendons of the human metacarpophalangeal joints. Anat Rec 1999; 256: 139–145PubMedCrossRef
108.
Zurück zum Zitat Benjamin M, Qin S, Ralphs JR. Fibrocartilage associated with human tendons and their pulleys. J Anat 1995; 187: 625–633PubMed Benjamin M, Qin S, Ralphs JR. Fibrocartilage associated with human tendons and their pulleys. J Anat 1995; 187: 625–633PubMed
109.
Zurück zum Zitat de Carvalho HF. Understanding the biomechanics of tendon fibrocartilages. J Theor Biol 1995; 172: 293–297PubMedCrossRef de Carvalho HF. Understanding the biomechanics of tendon fibrocartilages. J Theor Biol 1995; 172: 293–297PubMedCrossRef
110.
Zurück zum Zitat Kumai T, Takakura Y, Rufai A, et al. The functional anatomy of the human anterior talofibular ligament in relation to ankle sprains. J Anat 2002; 200: 457–465PubMedCrossRef Kumai T, Takakura Y, Rufai A, et al. The functional anatomy of the human anterior talofibular ligament in relation to ankle sprains. J Anat 2002; 200: 457–465PubMedCrossRef
111.
Zurück zum Zitat Kitaoka HB, Luo ZP, Growney ES, et al. Material properties of the plantar aponeurosis. Foot Ankle Int 1994; 15: 557–560PubMed Kitaoka HB, Luo ZP, Growney ES, et al. Material properties of the plantar aponeurosis. Foot Ankle Int 1994; 15: 557–560PubMed
112.
Zurück zum Zitat Blevins FT, Hecker AT, Bigler GT, et al. The effects of donor age and strain rate on the biomechanical properties of bone-patellar tendon-bone allografts. Am J Sports Med 1994; 22: 328–333PubMedCrossRef Blevins FT, Hecker AT, Bigler GT, et al. The effects of donor age and strain rate on the biomechanical properties of bone-patellar tendon-bone allografts. Am J Sports Med 1994; 22: 328–333PubMedCrossRef
113.
Zurück zum Zitat Ker RF. Dynamic tensile properties of the plantaris tendon of sheep (Ovis aries). J Exp Biol 1981; 93: 283–302PubMed Ker RF. Dynamic tensile properties of the plantaris tendon of sheep (Ovis aries). J Exp Biol 1981; 93: 283–302PubMed
114.
Zurück zum Zitat Woo SLY, Peterson RH, Ohland KJ, et al. The effects of strain rate on the properties of the medial collateral ligament in skeletally immature and mature rabbits: a biomechanical and histological study. J Orthop Res 1990; 8: 712–721PubMedCrossRef Woo SLY, Peterson RH, Ohland KJ, et al. The effects of strain rate on the properties of the medial collateral ligament in skeletally immature and mature rabbits: a biomechanical and histological study. J Orthop Res 1990; 8: 712–721PubMedCrossRef
115.
Zurück zum Zitat Butler DL, Grood ES, Noyes FR, et al. On the interpretation of our anterior cruciate ligament data. Clin Orthop 1985; 196: 26–34PubMed Butler DL, Grood ES, Noyes FR, et al. On the interpretation of our anterior cruciate ligament data. Clin Orthop 1985; 196: 26–34PubMed
116.
Zurück zum Zitat Johnson GA, Tramaglini DM, Levine RE, et al. Tensile and viscoelastic properties of human patellar tendon. J Orthop Res 1994; 12: 796–803PubMedCrossRef Johnson GA, Tramaglini DM, Levine RE, et al. Tensile and viscoelastic properties of human patellar tendon. J Orthop Res 1994; 12: 796–803PubMedCrossRef
117.
Zurück zum Zitat Noyes FR, DeLucas JL, Torvik PJ. Biomechanics of anterior cruciate ligament failure: an analysis of strain-rate sensitivity and mechanisms of failure in primates. J Bone Joint Surg Am 1974; 56: 236–253PubMed Noyes FR, DeLucas JL, Torvik PJ. Biomechanics of anterior cruciate ligament failure: an analysis of strain-rate sensitivity and mechanisms of failure in primates. J Bone Joint Surg Am 1974; 56: 236–253PubMed
118.
Zurück zum Zitat Butler DL, Grood ES, Noyes FR, et al. Effects of structure and strain measurement technique on the material properties of young human tendons and fascia. J Biomech 1984; 17: 579–596PubMedCrossRef Butler DL, Grood ES, Noyes FR, et al. Effects of structure and strain measurement technique on the material properties of young human tendons and fascia. J Biomech 1984; 17: 579–596PubMedCrossRef
119.
Zurück zum Zitat Wren TA, Yerby SA, Beaupre GS, et al. Mechanical properties of the human Achilles tendon. Clin Biomech 2001; 16: 245–251CrossRef Wren TA, Yerby SA, Beaupre GS, et al. Mechanical properties of the human Achilles tendon. Clin Biomech 2001; 16: 245–251CrossRef
120.
Zurück zum Zitat Danto MI, Woo SL. The mechanical properties of skeletally mature rabbit anterior cruciate ligament and patellar tendon over a range of strain rates. J Orthop Res 1993; 11: 58–67PubMedCrossRef Danto MI, Woo SL. The mechanical properties of skeletally mature rabbit anterior cruciate ligament and patellar tendon over a range of strain rates. J Orthop Res 1993; 11: 58–67PubMedCrossRef
121.
Zurück zum Zitat Wren TA, Yerby SA, Beaupre GS, et al. Influence of bone mineral density, age, and strain rate on the failure mode of human Achilles tendons. Clin Biomech 2001; 16: 529–534CrossRef Wren TA, Yerby SA, Beaupre GS, et al. Influence of bone mineral density, age, and strain rate on the failure mode of human Achilles tendons. Clin Biomech 2001; 16: 529–534CrossRef
122.
Zurück zum Zitat Ambrose CG, Kiebzak GM, Sabonghy EP, et al. Bio mechanical testing of cadaveric specimens: importance of bone mineral density assessment. Foot Ankle Int 2002; 23: 850–855PubMed Ambrose CG, Kiebzak GM, Sabonghy EP, et al. Bio mechanical testing of cadaveric specimens: importance of bone mineral density assessment. Foot Ankle Int 2002; 23: 850–855PubMed
123.
Zurück zum Zitat Woo SLY, Hollis JM, Adams DJ, et al. Tensile properties of the human femur-anterior cruciate ligament-tibia complex: the effects of specimen age and orientation. Am J Sports Med 1991; 19: 217–225PubMedCrossRef Woo SLY, Hollis JM, Adams DJ, et al. Tensile properties of the human femur-anterior cruciate ligament-tibia complex: the effects of specimen age and orientation. Am J Sports Med 1991; 19: 217–225PubMedCrossRef
124.
Zurück zum Zitat Haut Donahue TL, Gregersen C, Hull ML, et al. Comparison of viscoelastic, structural, and material properties of double-looped anterior cruciate ligament grafts made from bovine digital extensor and human hamstring tendons. J Biomech Eng 2001; 123: 162–169CrossRef Haut Donahue TL, Gregersen C, Hull ML, et al. Comparison of viscoelastic, structural, and material properties of double-looped anterior cruciate ligament grafts made from bovine digital extensor and human hamstring tendons. J Biomech Eng 2001; 123: 162–169CrossRef
125.
Zurück zum Zitat Lewis G, Shaw KM. Tensile properties of human tendo achillis: effect of donor age and strain rate. J Foot Ankle Surg 1997; 36: 435–445PubMedCrossRef Lewis G, Shaw KM. Tensile properties of human tendo achillis: effect of donor age and strain rate. J Foot Ankle Surg 1997; 36: 435–445PubMedCrossRef
126.
Zurück zum Zitat Attarian DE, McCrackin HJ, DeVito DP, et al. Biomechanical characteristics of human ankle ligaments. Foot Ankle 1985; 6: 54–58PubMed Attarian DE, McCrackin HJ, DeVito DP, et al. Biomechanical characteristics of human ankle ligaments. Foot Ankle 1985; 6: 54–58PubMed
127.
Zurück zum Zitat Harner CD, Xerogeanes JW, Livesay GA, et al. The human posterior cruciate ligament complex: an interdisciplinary study: ligament morphology and biomechanical evaluation. Am J Sports Med 1995; 23: 736–745PubMedCrossRef Harner CD, Xerogeanes JW, Livesay GA, et al. The human posterior cruciate ligament complex: an interdisciplinary study: ligament morphology and biomechanical evaluation. Am J Sports Med 1995; 23: 736–745PubMedCrossRef
128.
Zurück zum Zitat Momersteeg TJ, Blankevoort L, Huiskes R, et al. The effect of variable relative insertion orientation of human knee bone-ligament-bone complexes on the tensile stiffness. J Biomech 1995; 28: 745–752PubMedCrossRef Momersteeg TJ, Blankevoort L, Huiskes R, et al. The effect of variable relative insertion orientation of human knee bone-ligament-bone complexes on the tensile stiffness. J Biomech 1995; 28: 745–752PubMedCrossRef
129.
Zurück zum Zitat Przybylski GJ, Carlin GJ, Patel PR, et al. Human anterior and posterior cervical longitudinal ligaments possess similar tensile properties. J Orthop Res 1996; 14: 1005–1008PubMedCrossRef Przybylski GJ, Carlin GJ, Patel PR, et al. Human anterior and posterior cervical longitudinal ligaments possess similar tensile properties. J Orthop Res 1996; 14: 1005–1008PubMedCrossRef
130.
Zurück zum Zitat Race A, Amis AA. The mechanical properties of the two bundles of the human posterior cmciate ligament. J Biomech 1994; 27: 13–24PubMedCrossRef Race A, Amis AA. The mechanical properties of the two bundles of the human posterior cmciate ligament. J Biomech 1994; 27: 13–24PubMedCrossRef
131.
Zurück zum Zitat Siegler S, Block J, Schneck CD. The mechanical characteristics of the collateral ligaments of the human ankle joint. Foot Ankle 1988: 8: 234–242PubMed Siegler S, Block J, Schneck CD. The mechanical characteristics of the collateral ligaments of the human ankle joint. Foot Ankle 1988: 8: 234–242PubMed
132.
Zurück zum Zitat Hinton R, Jinnah RH, Johnson C, et al. A biomechanical analysis of solvent-dehydrated and freeze-dried human fascia lata allografts: a preliminary report. Am J Sports Med 1992; 20: 607–612PubMedCrossRef Hinton R, Jinnah RH, Johnson C, et al. A biomechanical analysis of solvent-dehydrated and freeze-dried human fascia lata allografts: a preliminary report. Am J Sports Med 1992; 20: 607–612PubMedCrossRef
133.
Zurück zum Zitat Parry DA. The molecular and fibrillar structure of collagen and its relationship to the mechanical properties of connective tissue. Biophys Chem 1988; 29: 195–209PubMedCrossRef Parry DA. The molecular and fibrillar structure of collagen and its relationship to the mechanical properties of connective tissue. Biophys Chem 1988; 29: 195–209PubMedCrossRef
134.
Zurück zum Zitat Strocchi R, de Pasquale V, Gubellini P, et al. The human anterior cruciate ligament: histological and ultrastructural observations. J Anat 1992; 180: 515–519PubMed Strocchi R, de Pasquale V, Gubellini P, et al. The human anterior cruciate ligament: histological and ultrastructural observations. J Anat 1992; 180: 515–519PubMed
135.
Zurück zum Zitat Hurschler C, Vanderby R, Martinez DA, et al. Mechanical and biochemical analyses of tibial compartment fascia in chronic compartment syndrome. Ann Biomed Eng 1994; 22: 272–279PubMedCrossRef Hurschler C, Vanderby R, Martinez DA, et al. Mechanical and biochemical analyses of tibial compartment fascia in chronic compartment syndrome. Ann Biomed Eng 1994; 22: 272–279PubMedCrossRef
136.
Zurück zum Zitat Kura H, Luo ZP, Kitaoka HB, et al. Mechanical behavior of the Lisfranc and dorsal cuneometatarsal ligaments: in vitro biomechanical study. J Orthop Trauma 2001; 15: 107–110PubMedCrossRef Kura H, Luo ZP, Kitaoka HB, et al. Mechanical behavior of the Lisfranc and dorsal cuneometatarsal ligaments: in vitro biomechanical study. J Orthop Trauma 2001; 15: 107–110PubMedCrossRef
137.
Zurück zum Zitat Bennett MB, Ker RF, Dimery NJ, et al. Mechanical properties of various mammalian tendons. J Zool 1986; 209: 537–548CrossRef Bennett MB, Ker RF, Dimery NJ, et al. Mechanical properties of various mammalian tendons. J Zool 1986; 209: 537–548CrossRef
138.
Zurück zum Zitat Iaconis F, Steindler R, Marinozzi G. Measurements of cross-sectional area of collagen structures (knee ligaments) by means of an optical method. J Biomech 1987; 20: 1003–1010PubMedCrossRef Iaconis F, Steindler R, Marinozzi G. Measurements of cross-sectional area of collagen structures (knee ligaments) by means of an optical method. J Biomech 1987; 20: 1003–1010PubMedCrossRef
139.
Zurück zum Zitat Race A, Amis AA. Cross-sectional area measurement of soft tissue: a new casting method. J Biomech 1996; 29: 1207–1212PubMedCrossRef Race A, Amis AA. Cross-sectional area measurement of soft tissue: a new casting method. J Biomech 1996; 29: 1207–1212PubMedCrossRef
140.
Zurück zum Zitat Woo SL, Danto MI, Ohland KJ, et al. The use of a laser micrometer system to determine the cross-sectional shape and area of ligaments: a comparative study with two existing methods. J Biomech Eng 1990; 112: 426–431PubMedCrossRef Woo SL, Danto MI, Ohland KJ, et al. The use of a laser micrometer system to determine the cross-sectional shape and area of ligaments: a comparative study with two existing methods. J Biomech Eng 1990; 112: 426–431PubMedCrossRef
141.
Zurück zum Zitat Benedict JV, Walker LB, Harris EH. Stress-strain characteristics and tensile strength of unembalmed human tendon. J Biomech 1968; 1: 53–63PubMedCrossRef Benedict JV, Walker LB, Harris EH. Stress-strain characteristics and tensile strength of unembalmed human tendon. J Biomech 1968; 1: 53–63PubMedCrossRef
142.
Zurück zum Zitat Butler DL, Kay MD, Stouffer DC. Comparison of material properties in fascicle-bone units from human patellar tendon and knee ligaments. J Biomech 1986; 19: 425–432PubMedCrossRef Butler DL, Kay MD, Stouffer DC. Comparison of material properties in fascicle-bone units from human patellar tendon and knee ligaments. J Biomech 1986; 19: 425–432PubMedCrossRef
143.
Zurück zum Zitat Itoi E, Berglund LJ, Grabowski JJ, et al. Tensile properties of the supraspinatus tendon. J Orthop Res 1995; 13: 578–584PubMedCrossRef Itoi E, Berglund LJ, Grabowski JJ, et al. Tensile properties of the supraspinatus tendon. J Orthop Res 1995; 13: 578–584PubMedCrossRef
144.
Zurück zum Zitat Stäubli HU, Schatzmann L, Brunner P, et al. Mechanical tensile properties of the quadriceps tendon and patellar ligament in young adults. Am J Sports Med 1999; 27: 27–34PubMed Stäubli HU, Schatzmann L, Brunner P, et al. Mechanical tensile properties of the quadriceps tendon and patellar ligament in young adults. Am J Sports Med 1999; 27: 27–34PubMed
145.
Zurück zum Zitat Butler DL, Guan Y, Kay MD, et al. Location-dependent variations in the material properties of the anterior cruciate ligament. J Biomech 1992; 25: 511–518PubMedCrossRef Butler DL, Guan Y, Kay MD, et al. Location-dependent variations in the material properties of the anterior cruciate ligament. J Biomech 1992; 25: 511–518PubMedCrossRef
146.
Zurück zum Zitat Quapp KM, Weiss JA. Material characterization of human medial collateral ligament. J Biomech Eng 1998; 120: 757–763PubMedCrossRef Quapp KM, Weiss JA. Material characterization of human medial collateral ligament. J Biomech Eng 1998; 120: 757–763PubMedCrossRef
147.
Zurück zum Zitat Kubo K, Kawakami Y, Kanehisa H, et al. Measurement of viscoelastic properties of tendon structures in vivo. Scand J Med Sci Sports 2002; 12: 3–8PubMedCrossRef Kubo K, Kawakami Y, Kanehisa H, et al. Measurement of viscoelastic properties of tendon structures in vivo. Scand J Med Sci Sports 2002; 12: 3–8PubMedCrossRef
148.
Zurück zum Zitat Haut RC, Powlison AC. The effects of test environment and cyclic stretching on the failure properties of human patellar tendons. J Orthop Res 1990; 8: 532–540PubMedCrossRef Haut RC, Powlison AC. The effects of test environment and cyclic stretching on the failure properties of human patellar tendons. J Orthop Res 1990; 8: 532–540PubMedCrossRef
149.
Zurück zum Zitat Haut TL, Haut RC. The state of tissue hydration determines the strain-rate-sensitive stiffness of human patellar tendon. J Biomech 1997; 30: 79–81PubMedCrossRef Haut TL, Haut RC. The state of tissue hydration determines the strain-rate-sensitive stiffness of human patellar tendon. J Biomech 1997; 30: 79–81PubMedCrossRef
150.
Zurück zum Zitat Thornton GM, Shrive NG, Frank CB. Altering ligament water content affects ligament pre-stress and creep behaviour. J Orthop Res 2001; 19: 845–851PubMedCrossRef Thornton GM, Shrive NG, Frank CB. Altering ligament water content affects ligament pre-stress and creep behaviour. J Orthop Res 2001; 19: 845–851PubMedCrossRef
151.
Zurück zum Zitat Flahiff CM, Brooks AT, Hollis JM, et al. Biomechanical analysis of patellar tendon allografts as a function of donor age. Am J Sports Med 1995; 23: 354–358PubMedCrossRef Flahiff CM, Brooks AT, Hollis JM, et al. Biomechanical analysis of patellar tendon allografts as a function of donor age. Am J Sports Med 1995; 23: 354–358PubMedCrossRef
152.
Zurück zum Zitat Haut RC, Lancaster RL, DeCamp CE. Mechanical properties of the canine patellar tendon: some correlations with age and the content of collagen. J Biomech 1992; 25: 163–173PubMedCrossRef Haut RC, Lancaster RL, DeCamp CE. Mechanical properties of the canine patellar tendon: some correlations with age and the content of collagen. J Biomech 1992; 25: 163–173PubMedCrossRef
153.
Zurück zum Zitat Hubbard RP, Soutas-Little RW. Mechanical properties of human tendon and their age dependence. J Biomech Eng 1984; 106: 144–150PubMedCrossRef Hubbard RP, Soutas-Little RW. Mechanical properties of human tendon and their age dependence. J Biomech Eng 1984; 106: 144–150PubMedCrossRef
154.
Zurück zum Zitat Lee TQ, Dettling J, Sandusky MD, et al. Age related biomechanical properties of the glenoid-anterior band of the inferior glenohumeral ligament-humerus complex. Clin Biomech 1999: 14: 471–476CrossRef Lee TQ, Dettling J, Sandusky MD, et al. Age related biomechanical properties of the glenoid-anterior band of the inferior glenohumeral ligament-humerus complex. Clin Biomech 1999: 14: 471–476CrossRef
155.
Zurück zum Zitat Tuite DJ, Renstrom PA, O’Brien M. The aging tendon. Scand J Med Sci Sports 1997; 7: 72–77PubMedCrossRef Tuite DJ, Renstrom PA, O’Brien M. The aging tendon. Scand J Med Sci Sports 1997; 7: 72–77PubMedCrossRef
156.
Zurück zum Zitat Kirkendall DT, Garrett WE. Function and biomechanics of tendons. Scand J Med Sci Sports 1997; 7: 62–66PubMedCrossRef Kirkendall DT, Garrett WE. Function and biomechanics of tendons. Scand J Med Sci Sports 1997; 7: 62–66PubMedCrossRef
157.
Zurück zum Zitat Maganaris CN, Narici MV, Almekinders LC, et al. Biomechanics and pathophysiology of overuse tendon injuries: ideas on insertional tendinopathy. Sports Med 2004; 34: 1005–1017PubMedCrossRef Maganaris CN, Narici MV, Almekinders LC, et al. Biomechanics and pathophysiology of overuse tendon injuries: ideas on insertional tendinopathy. Sports Med 2004; 34: 1005–1017PubMedCrossRef
158.
Zurück zum Zitat Vasseur PB, Pool RR, Arnoczky SP, et al. Correlative biomechanical and histologic study of the cranial cruciate ligament in dogs. Am J Vet Res 1985; 46: 1842–1854PubMed Vasseur PB, Pool RR, Arnoczky SP, et al. Correlative biomechanical and histologic study of the cranial cruciate ligament in dogs. Am J Vet Res 1985; 46: 1842–1854PubMed
159.
Zurück zum Zitat Sano H, Ishii H, Yeadon A, et al. Degeneration at the insertion weakens the tensile strength of the supraspinatus tendon: a comparative mechanical and histologic study of the bone-tendon complex. J Orthop Res 1997; 15: 719–726PubMedCrossRef Sano H, Ishii H, Yeadon A, et al. Degeneration at the insertion weakens the tensile strength of the supraspinatus tendon: a comparative mechanical and histologic study of the bone-tendon complex. J Orthop Res 1997; 15: 719–726PubMedCrossRef
160.
Zurück zum Zitat Soslowsky LJ, Thomopoulos S, Tun S, et al. Overuse activity injures the supraspinatus tendon in an animal model: a histologic and biomechanical study. J Shoulder Elbow Surg 2000; 9: 79–84PubMedCrossRef Soslowsky LJ, Thomopoulos S, Tun S, et al. Overuse activity injures the supraspinatus tendon in an animal model: a histologic and biomechanical study. J Shoulder Elbow Surg 2000; 9: 79–84PubMedCrossRef
161.
Zurück zum Zitat Kannus P, Józsa L. Histopathological changes preceding spontaneous rupture of a tendon: a controlled study of 891 patients. J Bone Joint Surg Am 1991; 73: 1507–1525PubMed Kannus P, Józsa L. Histopathological changes preceding spontaneous rupture of a tendon: a controlled study of 891 patients. J Bone Joint Surg Am 1991; 73: 1507–1525PubMed
162.
Zurück zum Zitat Ker RF, Bennett MB, Bibby SR, et al. The spring in the arch of the human foot. Nature 1987; 325: 147–149PubMedCrossRef Ker RF, Bennett MB, Bibby SR, et al. The spring in the arch of the human foot. Nature 1987; 325: 147–149PubMedCrossRef
163.
Zurück zum Zitat Murphy GA, Pneumaticos SG, Kamaric E, et al. Biomechanical consequences of sequential plantar fascia release. Foot Ankle Int 1998; 19: 149–152PubMed Murphy GA, Pneumaticos SG, Kamaric E, et al. Biomechanical consequences of sequential plantar fascia release. Foot Ankle Int 1998; 19: 149–152PubMed
164.
Zurück zum Zitat Kitaoka HB, Luo ZP, An KN. Mechanical behavior of the foot and ankle after plantar fascia release in the unstable foot. Foot Ankle Int 1997; 18: 8–15PubMed Kitaoka HB, Luo ZP, An KN. Mechanical behavior of the foot and ankle after plantar fascia release in the unstable foot. Foot Ankle Int 1997; 18: 8–15PubMed
165.
Zurück zum Zitat Thordarson DB, Hedman T, Lundquist D, et al. Effect of calcaneal osteotomy and plantar fasciotomy on arch configuration in a flatfoot model. Foot Ankle Int 1998; 19: 374–378PubMed Thordarson DB, Hedman T, Lundquist D, et al. Effect of calcaneal osteotomy and plantar fasciotomy on arch configuration in a flatfoot model. Foot Ankle Int 1998; 19: 374–378PubMed
166.
Zurück zum Zitat Kitaoka HB, Luo ZP, An KN. Effect of plantar fasciotomy on stability of arch of foot. Clin Orthop 1997; 344: 307–312PubMed Kitaoka HB, Luo ZP, An KN. Effect of plantar fasciotomy on stability of arch of foot. Clin Orthop 1997; 344: 307–312PubMed
167.
Zurück zum Zitat Kitaoka HB, Ahn TK, Luo ZP, et al. Stability of the arch of the foot. Foot Ankle Int 1997; 18: 644–648PubMed Kitaoka HB, Ahn TK, Luo ZP, et al. Stability of the arch of the foot. Foot Ankle Int 1997; 18: 644–648PubMed
168.
Zurück zum Zitat Anderson DJ, Fallat LM, Savoy-Moore RT. Computer-assisted assessment of lateral column movement following plantar fascial release: a cadaveric study. J Foot Ankle Surg 2001; 40: 62–70PubMedCrossRef Anderson DJ, Fallat LM, Savoy-Moore RT. Computer-assisted assessment of lateral column movement following plantar fascial release: a cadaveric study. J Foot Ankle Surg 2001; 40: 62–70PubMedCrossRef
170.
Zurück zum Zitat Sarrafian SK. Functional characteristics of the foot and plantar aponeurosis under tibiotalar loading. Foot Ankle 1987; 8: 4–18PubMed Sarrafian SK. Functional characteristics of the foot and plantar aponeurosis under tibiotalar loading. Foot Ankle 1987; 8: 4–18PubMed
171.
Zurück zum Zitat Vogler HW, Bojsen-Moller F. Tarsal functions, movement, and stabilization mechanisms in foot, ankle and leg performance. J Am Podiatr Med Assoc 2000; 90: 112–125PubMed Vogler HW, Bojsen-Moller F. Tarsal functions, movement, and stabilization mechanisms in foot, ankle and leg performance. J Am Podiatr Med Assoc 2000; 90: 112–125PubMed
172.
Zurück zum Zitat Kogler GF, Solomonidis SE, Paul JP. In vitro method for quantifying the effectiveness of the longitudinal arch support mechanism of a foot orthosis. Clin Biomech 1995; 10: 245–252CrossRef Kogler GF, Solomonidis SE, Paul JP. In vitro method for quantifying the effectiveness of the longitudinal arch support mechanism of a foot orthosis. Clin Biomech 1995; 10: 245–252CrossRef
173.
Zurück zum Zitat Kogler GF, Solomonidis SE, Paul JP. Biomechanics of longitudinal arch support mechanisms in foot orthoses and their effect on plantar aponeurosis strain. Clin Biomech 1996; 11: 243–252CrossRef Kogler GF, Solomonidis SE, Paul JP. Biomechanics of longitudinal arch support mechanisms in foot orthoses and their effect on plantar aponeurosis strain. Clin Biomech 1996; 11: 243–252CrossRef
174.
Zurück zum Zitat Kogler GF, Veer EB, Solomonidis SE, et al. The influence of medial and lateral placement of orthotic wedges on loading of the plantar aponeurosis. J Bone Joint Surg Am 1999; 81: 1403–1413PubMed Kogler GF, Veer EB, Solomonidis SE, et al. The influence of medial and lateral placement of orthotic wedges on loading of the plantar aponeurosis. J Bone Joint Surg Am 1999; 81: 1403–1413PubMed
175.
Zurück zum Zitat Huang CK, Kitaoka HB, An KN, et al. Biomechanical stability of the arch. Foot Ankle 1993; 14: 353–357PubMed Huang CK, Kitaoka HB, An KN, et al. Biomechanical stability of the arch. Foot Ankle 1993; 14: 353–357PubMed
176.
Zurück zum Zitat Arangio GA, Salathe EP. Medial displacement calcaneal osteotomy reduces the excess forces in the medial longitudinal arch of the flat foot. Clin Biomech 2001; 16: 535–539CrossRef Arangio GA, Salathe EP. Medial displacement calcaneal osteotomy reduces the excess forces in the medial longitudinal arch of the flat foot. Clin Biomech 2001; 16: 535–539CrossRef
177.
Zurück zum Zitat Arangio GA, Chen C, Salathe EP. Effect of varying arch height with and without the plantar fascia on the mechanical properties of the foot. Foot Ankle Int 1998; 19: 705–709PubMed Arangio GA, Chen C, Salathe EP. Effect of varying arch height with and without the plantar fascia on the mechanical properties of the foot. Foot Ankle Int 1998; 19: 705–709PubMed
178.
Zurück zum Zitat Gefen A. Stress analysis of the standing foot following surgical plantar fascia release. J Biomech 2002; 35: 629–637PubMedCrossRef Gefen A. Stress analysis of the standing foot following surgical plantar fascia release. J Biomech 2002; 35: 629–637PubMedCrossRef
179.
Zurück zum Zitat Arangio GA, Chen C, Kim W. Effect of cutting the plantar fascia on mechanical properties of the foot. Clin Orthop 1997; 339: 227–231PubMedCrossRef Arangio GA, Chen C, Kim W. Effect of cutting the plantar fascia on mechanical properties of the foot. Clin Orthop 1997; 339: 227–231PubMedCrossRef
180.
Zurück zum Zitat Kim W, Voloshin AS. Role of the plantar fascia in the load bearing capacity of the human foot. J Biomech 1995; 28: 1025–1033PubMedCrossRef Kim W, Voloshin AS. Role of the plantar fascia in the load bearing capacity of the human foot. J Biomech 1995; 28: 1025–1033PubMedCrossRef
181.
Zurück zum Zitat Carlsoo S, Wetzenstein H. Change of form of the foot and the foot skeleton upon momentary weight-bearing. Acta Orthop Scand 1968; 39: 413–423PubMedCrossRef Carlsoo S, Wetzenstein H. Change of form of the foot and the foot skeleton upon momentary weight-bearing. Acta Orthop Scand 1968; 39: 413–423PubMedCrossRef
182.
Zurück zum Zitat Salathe EP, Arangio GA, Salathe EP. A biomechanical model of the foot. J Biomech 1986; 19: 989–1001PubMedCrossRef Salathe EP, Arangio GA, Salathe EP. A biomechanical model of the foot. J Biomech 1986; 19: 989–1001PubMedCrossRef
183.
Zurück zum Zitat Williams A, Vedi V, Singh D, et al. Hick’s revisited: a weightbearing in vivo study of the biomechanics of the plantar fascia employing dynamic M.R.I. J Bone Joint Surg Br 1999; 81: 381CrossRef Williams A, Vedi V, Singh D, et al. Hick’s revisited: a weightbearing in vivo study of the biomechanics of the plantar fascia employing dynamic M.R.I. J Bone Joint Surg Br 1999; 81: 381CrossRef
184.
Zurück zum Zitat Vedi V, Williams A, Singh D, et al. Hick’s revisited: a weightbearing in vivo study of the biomechanics of the plantar fascia employing ‘dynamic’ MRI [abstract]. J Bone Joint Surg Br 1999; 81: 156CrossRef Vedi V, Williams A, Singh D, et al. Hick’s revisited: a weightbearing in vivo study of the biomechanics of the plantar fascia employing ‘dynamic’ MRI [abstract]. J Bone Joint Surg Br 1999; 81: 156CrossRef
185.
Zurück zum Zitat Hicks JH. The mechanics of the foot: the plantar aponeurosis and the arch. J Anat 1954; 88: 25–30PubMed Hicks JH. The mechanics of the foot: the plantar aponeurosis and the arch. J Anat 1954; 88: 25–30PubMed
186.
Zurück zum Zitat Rush SM, Christensen JC, Johnson CH. Biomechanics of the first ray, part 2: metatarsus primus vams as a cause of hypermobility - a three dimensional kinematic analysis in a cadaver model. J Foot Ankle Surg 2000; 39: 68–75PubMedCrossRef Rush SM, Christensen JC, Johnson CH. Biomechanics of the first ray, part 2: metatarsus primus vams as a cause of hypermobility - a three dimensional kinematic analysis in a cadaver model. J Foot Ankle Surg 2000; 39: 68–75PubMedCrossRef
187.
Zurück zum Zitat Bojsen-Moller F. Calcaneocuboid joint and stability of the longitudinal arch of the foot at high and low gear push off. J Anat 1979; 129: 165–176PubMed Bojsen-Moller F. Calcaneocuboid joint and stability of the longitudinal arch of the foot at high and low gear push off. J Anat 1979; 129: 165–176PubMed
188.
Zurück zum Zitat Hicks JH. The mechanics of the foot: the j oints. J Anat 1953; 87: 345–357PubMed Hicks JH. The mechanics of the foot: the j oints. J Anat 1953; 87: 345–357PubMed
189.
Zurück zum Zitat Thordarson DB, Schmotzer H, Chon J, et al. Dynamic support of the human longitudinal arch: a biomechanical evaluation. Clin Orthop 1995; 316: 165–172PubMed Thordarson DB, Schmotzer H, Chon J, et al. Dynamic support of the human longitudinal arch: a biomechanical evaluation. Clin Orthop 1995; 316: 165–172PubMed
190.
Zurück zum Zitat Kappel-Bargas A, Woolf RD, Cornwall MW, et al. The windlass mechanism during normal walking and passive first metatarsalphalangeal joint extension. Clin Biomech 1998; 13: 190–194CrossRef Kappel-Bargas A, Woolf RD, Cornwall MW, et al. The windlass mechanism during normal walking and passive first metatarsalphalangeal joint extension. Clin Biomech 1998; 13: 190–194CrossRef
191.
Zurück zum Zitat Hetherington VJ, Carnett J, Patterson BA. Motion of the first metatarsophalangeal joint. J Foot Surg 1989; 28: 13–19PubMed Hetherington VJ, Carnett J, Patterson BA. Motion of the first metatarsophalangeal joint. J Foot Surg 1989; 28: 13–19PubMed
192.
Zurück zum Zitat Shereff MJ, Bejjani FJ, Kummer FJ. Kinematics of the first metatarsophalangeal joint. J Bone Joint Surg Am 1986; 68: 392–398PubMed Shereff MJ, Bejjani FJ, Kummer FJ. Kinematics of the first metatarsophalangeal joint. J Bone Joint Surg Am 1986; 68: 392–398PubMed
193.
Zurück zum Zitat Kogler GF, Veer EB, Verhulst SJ, et al. The effect of heel elevation on strain within the plantar aponeurosis: in vitro study. Foot Ankle Int 2001; 22: 433–439PubMed Kogler GF, Veer EB, Verhulst SJ, et al. The effect of heel elevation on strain within the plantar aponeurosis: in vitro study. Foot Ankle Int 2001; 22: 433–439PubMed
194.
Zurück zum Zitat Winson IG, Lundberg A, Bylund C. The pattern of motion of the longitudinal arch. Foot 1994; 4: 151–154CrossRef Winson IG, Lundberg A, Bylund C. The pattern of motion of the longitudinal arch. Foot 1994; 4: 151–154CrossRef
195.
Zurück zum Zitat Sharkey NA, Ferris L, Donahue SW. Biomechanical consequences of plantar fascial release or rupture during gait, part I: disruptions in longitudinal arch conformation. Foot Ankle Int 1998; 19: 812–820PubMed Sharkey NA, Ferris L, Donahue SW. Biomechanical consequences of plantar fascial release or rupture during gait, part I: disruptions in longitudinal arch conformation. Foot Ankle Int 1998; 19: 812–820PubMed
196.
Zurück zum Zitat Carlson RE, Fleming LL, Hutton WC. The biomechanical relationship between the tendoachilles, plantar fascia and metatarsophalangeal joint dorsiflexi on angle. Foot Ankle Int 2000; 21: 18–25PubMed Carlson RE, Fleming LL, Hutton WC. The biomechanical relationship between the tendoachilles, plantar fascia and metatarsophalangeal joint dorsiflexi on angle. Foot Ankle Int 2000; 21: 18–25PubMed
197.
Zurück zum Zitat Kitaoka HB, Luo ZP, An KN. Effect of the posterior tibial tendon on the arch of the foot during simulated weightbearing: biomechanical analysis. Foot Ankle Int 1997; 18: 43–46PubMed Kitaoka HB, Luo ZP, An KN. Effect of the posterior tibial tendon on the arch of the foot during simulated weightbearing: biomechanical analysis. Foot Ankle Int 1997; 18: 43–46PubMed
198.
Zurück zum Zitat Donn AW, Nicol AC. Ligament strain measurements in cadaveric feet during simulated functional activities. In: Hakkinen K, editor. 15th Congress of the International Society of Biomechanics; 1995 Jul 2–6; Jyvaskyla, Finland: 1995: 226–227 Donn AW, Nicol AC. Ligament strain measurements in cadaveric feet during simulated functional activities. In: Hakkinen K, editor. 15th Congress of the International Society of Biomechanics; 1995 Jul 2–6; Jyvaskyla, Finland: 1995: 226–227
199.
Zurück zum Zitat Hamel AJ, Donahue SW, Sharkey NA. Contributions of active and passive toe flexion to forefoot loading. Clin Orthop 2001; 393: 326–334PubMedCrossRef Hamel AJ, Donahue SW, Sharkey NA. Contributions of active and passive toe flexion to forefoot loading. Clin Orthop 2001; 393: 326–334PubMedCrossRef
200.
Zurück zum Zitat Tansey PA, Briggs PJ. Active and passive mechanisms in the control of heel supination. J Foot Ankle Surg 2001; 7: 131–136CrossRef Tansey PA, Briggs PJ. Active and passive mechanisms in the control of heel supination. J Foot Ankle Surg 2001; 7: 131–136CrossRef
201.
Zurück zum Zitat Salathe EP, Arangio GP. A biomechanical model of the foot: the role of muscles, tendons, and ligaments. J Biomech Eng 2002; 124: 281–287PubMedCrossRef Salathe EP, Arangio GP. A biomechanical model of the foot: the role of muscles, tendons, and ligaments. J Biomech Eng 2002; 124: 281–287PubMedCrossRef
202.
Zurück zum Zitat Duranti R, Galletti R, Pantaleo T. Electromyographic observations in patients with foot pain syndromes. Am J Phys Med 1985; 64: 295–304PubMed Duranti R, Galletti R, Pantaleo T. Electromyographic observations in patients with foot pain syndromes. Am J Phys Med 1985; 64: 295–304PubMed
203.
Zurück zum Zitat Basmajian JV, Stecko G. The role of muscles in arch support of the foot: an electromyographic study. J Bone Joint Surg Am 1963; 45: 1184–1190PubMed Basmajian JV, Stecko G. The role of muscles in arch support of the foot: an electromyographic study. J Bone Joint Surg Am 1963; 45: 1184–1190PubMed
204.
Zurück zum Zitat Reeser LA, Susman RL, Stern JT. Electromyographic studies of the human foot: experimental approaches to hominid evolution. Foot Ankle 1983; 3: 391–407PubMed Reeser LA, Susman RL, Stern JT. Electromyographic studies of the human foot: experimental approaches to hominid evolution. Foot Ankle 1983; 3: 391–407PubMed
205.
Zurück zum Zitat Mann R, Inman VT. Phasic activity of intrinsic muscles of the foot. J Bone Joint Surg Am 1964; 46: 469–481PubMed Mann R, Inman VT. Phasic activity of intrinsic muscles of the foot. J Bone Joint Surg Am 1964; 46: 469–481PubMed
206.
Zurück zum Zitat Kayano J. Dynamic function of medial foot arch. Nippon Seikeigeka Gakkai Zasshi 1986; 60: 1147–1156 Kayano J. Dynamic function of medial foot arch. Nippon Seikeigeka Gakkai Zasshi 1986; 60: 1147–1156
207.
Zurück zum Zitat Sharkey NA, Donahue SW, Ferris L. Biomechanical consequences of plantar fascial release or rupture during gait, part II: alterations in forefoot loading. Foot Ankle Int 1999; 20: 86–96PubMed Sharkey NA, Donahue SW, Ferris L. Biomechanical consequences of plantar fascial release or rupture during gait, part II: alterations in forefoot loading. Foot Ankle Int 1999; 20: 86–96PubMed
208.
Zurück zum Zitat Harton FM, Weiskopf SA, Goecker RM. Sectioning the plantar fascia: effect on first metatarsophalangeal joint motion. J Am Podiatr Med Assoc 2002; 92: 532–536PubMed Harton FM, Weiskopf SA, Goecker RM. Sectioning the plantar fascia: effect on first metatarsophalangeal joint motion. J Am Podiatr Med Assoc 2002; 92: 532–536PubMed
209.
Zurück zum Zitat Pardiwala A, Henry APJ. Traumatic rupture of the plantar fascia leading to development of claw toe deformity: two case reports. J Foot Ankle Surg 2001; 7: 197–200CrossRef Pardiwala A, Henry APJ. Traumatic rupture of the plantar fascia leading to development of claw toe deformity: two case reports. J Foot Ankle Surg 2001; 7: 197–200CrossRef
210.
Zurück zum Zitat Mann R, Poppen NK, O’Konski M. Amputation of the great toe: a clinical and biomechanical study. Clin Orthop 1988; 226: 192–205PubMed Mann R, Poppen NK, O’Konski M. Amputation of the great toe: a clinical and biomechanical study. Clin Orthop 1988; 226: 192–205PubMed
211.
Zurück zum Zitat Wearing SC, Urry SR, Smeathers JE. Ground reaction forces at discrete sites of the foot derived from pressure plate measurements. Foot Ankle Int 2001; 22: 653–661PubMed Wearing SC, Urry SR, Smeathers JE. Ground reaction forces at discrete sites of the foot derived from pressure plate measurements. Foot Ankle Int 2001; 22: 653–661PubMed
212.
Zurück zum Zitat Hughes J, Clark P, Klenerman L. The importance of the toes in walking. J Bone Joint Surg Br 1990; 72: 245–251PubMed Hughes J, Clark P, Klenerman L. The importance of the toes in walking. J Bone Joint Surg Br 1990; 72: 245–251PubMed
213.
Zurück zum Zitat Cornwall MW, McPoil TG. Motion of the calcaneus, navicular, and first metatarsal during the stance phase of walking. J Am Podiatr Med Assoc 2002: 92: 67–76PubMed Cornwall MW, McPoil TG. Motion of the calcaneus, navicular, and first metatarsal during the stance phase of walking. J Am Podiatr Med Assoc 2002: 92: 67–76PubMed
214.
Zurück zum Zitat Scott SH, Winter DA. Biomechanical model of the human foot: kinematics and kinetics during the stance phase of walking. J Biomech 1993; 26: 1091–1104PubMedCrossRef Scott SH, Winter DA. Biomechanical model of the human foot: kinematics and kinetics during the stance phase of walking. J Biomech 1993; 26: 1091–1104PubMedCrossRef
215.
Zurück zum Zitat Leardini A, Benedetti MG, Catani F, et al. An anatomically based protocol for the description of foot segment kinematics during gait. Clin Biomech 1999; 14: 528–536CrossRef Leardini A, Benedetti MG, Catani F, et al. An anatomically based protocol for the description of foot segment kinematics during gait. Clin Biomech 1999; 14: 528–536CrossRef
216.
Zurück zum Zitat Wearing SC, Urry S, Perlman P, et al. Sagittal plane motion of the human arch during gait: a videofluoroscopic analysis. Foot Ankle Int 1998; 19: 738–742PubMed Wearing SC, Urry S, Perlman P, et al. Sagittal plane motion of the human arch during gait: a videofluoroscopic analysis. Foot Ankle Int 1998; 19: 738–742PubMed
217.
Zurück zum Zitat Yang SM, Kayamo J, Norimatsu T, et al. Dynamic changes of the arches of the foot during walking. In: Winter DA, Norman RW, Wells RP, et al., editors. Biomechanics IX: international series on biomechanics. Champaign (IL): Human Kinetics, 1985: 417–422 Yang SM, Kayamo J, Norimatsu T, et al. Dynamic changes of the arches of the foot during walking. In: Winter DA, Norman RW, Wells RP, et al., editors. Biomechanics IX: international series on biomechanics. Champaign (IL): Human Kinetics, 1985: 417–422
218.
Zurück zum Zitat Wearing SC, Smeathers JE, Yates B, et al. Sagittal movement of the medial longitudinal arch is unchanged in plantar fasciitis. Med Sci Sports Exerc 2004; 36: 1761–1767PubMedCrossRef Wearing SC, Smeathers JE, Yates B, et al. Sagittal movement of the medial longitudinal arch is unchanged in plantar fasciitis. Med Sci Sports Exerc 2004; 36: 1761–1767PubMedCrossRef
219.
Zurück zum Zitat Hunt AE, Smith RM, Torode M. Extrinsic muscle activity, foot motion and ankle joint moments during the stance phase of walking. Foot Ankle Int 2001; 22: 31–41PubMed Hunt AE, Smith RM, Torode M. Extrinsic muscle activity, foot motion and ankle joint moments during the stance phase of walking. Foot Ankle Int 2001; 22: 31–41PubMed
220.
Zurück zum Zitat Hunt AE, Smith RM, Torode M, et al. Inter-segment foot motion and ground reaction forces over the stance phase of walking. Clin Biomech 2001; 16: 592–600CrossRef Hunt AE, Smith RM, Torode M, et al. Inter-segment foot motion and ground reaction forces over the stance phase of walking. Clin Biomech 2001; 16: 592–600CrossRef
221.
Zurück zum Zitat Cashmere T, Smith R, Hunt A. Medial longitudinal arch of the foot: stationary versus walking measures. Foot Ankle Int 1999; 20: 112–118PubMed Cashmere T, Smith R, Hunt A. Medial longitudinal arch of the foot: stationary versus walking measures. Foot Ankle Int 1999; 20: 112–118PubMed
222.
Zurück zum Zitat Phillips RD, Law EA, Ward ED. Functional motion of the medial column joints of the foot during propulsion. J Am Podiatr Med Assoc 1996; 86: 474–486PubMed Phillips RD, Law EA, Ward ED. Functional motion of the medial column joints of the foot during propulsion. J Am Podiatr Med Assoc 1996; 86: 474–486PubMed
223.
Zurück zum Zitat Kameyama O, Ogawa R, Okamoto T, et al. Electric discharge patterns of ankle muscles during the normal gait cycle. Arch Phys Med Rehabil 1990; 71: 969–974PubMed Kameyama O, Ogawa R, Okamoto T, et al. Electric discharge patterns of ankle muscles during the normal gait cycle. Arch Phys Med Rehabil 1990; 71: 969–974PubMed
224.
Zurück zum Zitat Blanc Y, Baimer C, Landis T, et al. Temporal parameters and patterns of the foot roll over during walking: normative data for healthy adults. Gait Posture 1999; 10: 97–108PubMedCrossRef Blanc Y, Baimer C, Landis T, et al. Temporal parameters and patterns of the foot roll over during walking: normative data for healthy adults. Gait Posture 1999; 10: 97–108PubMedCrossRef
225.
Zurück zum Zitat Sutherland DH, Kaufman KR, Moitoza JR. Kinematics of normal human walking. In: Rose J, Gamble JG, editors. Human walking. Sydney: Williams & Wilkins, 1994: 23–44 Sutherland DH, Kaufman KR, Moitoza JR. Kinematics of normal human walking. In: Rose J, Gamble JG, editors. Human walking. Sydney: Williams & Wilkins, 1994: 23–44
226.
Zurück zum Zitat Andriacchi TP, Alexander EJ. Studies of human locomotion: past, present and future. J Biomech 2000; 33: 1217–1224PubMedCrossRef Andriacchi TP, Alexander EJ. Studies of human locomotion: past, present and future. J Biomech 2000; 33: 1217–1224PubMedCrossRef
227.
Zurück zum Zitat Maslen BA, Ackland TR. Radiographic study of the skin displacement errors in the foot and ankle during standing. Clin Biomech 1994; 9: 291–296CrossRef Maslen BA, Ackland TR. Radiographic study of the skin displacement errors in the foot and ankle during standing. Clin Biomech 1994; 9: 291–296CrossRef
228.
Zurück zum Zitat Giddings VL, Beaupre GS, Whalen RT, et al. Calcaneal loading during walking and running. Med Sci Sports Exerc 2000; 32: 627–634PubMedCrossRef Giddings VL, Beaupre GS, Whalen RT, et al. Calcaneal loading during walking and running. Med Sci Sports Exerc 2000; 32: 627–634PubMedCrossRef
229.
Zurück zum Zitat Scott SH, Winter DA. Internal forces of chronic running injury sites. Med Sci Sports Exerc 1990; 22: 357–369PubMed Scott SH, Winter DA. Internal forces of chronic running injury sites. Med Sci Sports Exerc 1990; 22: 357–369PubMed
230.
Zurück zum Zitat Gefen A. The in vivo elastic properties of the plantar fascia during the contact phase of walking. Foot Ankle Int 2003; 24: 238–244PubMed Gefen A. The in vivo elastic properties of the plantar fascia during the contact phase of walking. Foot Ankle Int 2003; 24: 238–244PubMed
231.
Zurück zum Zitat Maganaris CN, Paul JP. In vivo human tendon mechanical properties. J Physiol 1999; 521: 307–313PubMedCrossRef Maganaris CN, Paul JP. In vivo human tendon mechanical properties. J Physiol 1999; 521: 307–313PubMedCrossRef
232.
Zurück zum Zitat Magnusson SP, Aagaard P, Dyhre-Poulsen P, et al. Load-displacement properties of the human triceps surae aponeurosis in vivo. J Physiol 2001; 531: 277–288PubMedCrossRef Magnusson SP, Aagaard P, Dyhre-Poulsen P, et al. Load-displacement properties of the human triceps surae aponeurosis in vivo. J Physiol 2001; 531: 277–288PubMedCrossRef
233.
Zurück zum Zitat Muramatsu T, Muraoka T, Takeshita D, et al. Mechanical properties of tendon and aponeurosis of human gastrocnemius muscle in vivo. J Appl Physiol 2001; 90: 1671–1678PubMed Muramatsu T, Muraoka T, Takeshita D, et al. Mechanical properties of tendon and aponeurosis of human gastrocnemius muscle in vivo. J Appl Physiol 2001; 90: 1671–1678PubMed
234.
Zurück zum Zitat Rosager S, Aagaard P, Dyhre-Poulsen P, et al. Load-displacement properties of the human triceps surae aponeurosis and tendon in runners and non-runners. Scand J Med Sci Sports 2002; 12: 90–98PubMedCrossRef Rosager S, Aagaard P, Dyhre-Poulsen P, et al. Load-displacement properties of the human triceps surae aponeurosis and tendon in runners and non-runners. Scand J Med Sci Sports 2002; 12: 90–98PubMedCrossRef
235.
Zurück zum Zitat Erdemir A, Hamel AJ, Fauth AR, et al. Dynamic loading of the plantar aponeurosis in walking. J Bone Joint Surg Am 2004; 86: 546–552PubMed Erdemir A, Hamel AJ, Fauth AR, et al. Dynamic loading of the plantar aponeurosis in walking. J Bone Joint Surg Am 2004; 86: 546–552PubMed
236.
Zurück zum Zitat Malaviya P, Butler DL, Korvick DL, et al. In vivo tendon forces correlate with activity level and remain bounded: evidence in a rabbit flexor tendon model. J Biomech 1998; 31: 1043–1049PubMedCrossRef Malaviya P, Butler DL, Korvick DL, et al. In vivo tendon forces correlate with activity level and remain bounded: evidence in a rabbit flexor tendon model. J Biomech 1998; 31: 1043–1049PubMedCrossRef
237.
Zurück zum Zitat Grasel RP, Schweitzer ME, Kovalovich AM, et al. MR imaging of plantar fasciitis: edema, tears, and occult marrow abnormalities correlated with outcome. Am J Roentgenol 1999; 173: 699–701 Grasel RP, Schweitzer ME, Kovalovich AM, et al. MR imaging of plantar fasciitis: edema, tears, and occult marrow abnormalities correlated with outcome. Am J Roentgenol 1999; 173: 699–701
238.
Zurück zum Zitat Schepsis AA, Leach RE, Gorzyca J. Plantar fasciitis: etiology, treatment, surgical results, and review of the literature. Clin Orthop 1991; 266: 185–196PubMed Schepsis AA, Leach RE, Gorzyca J. Plantar fasciitis: etiology, treatment, surgical results, and review of the literature. Clin Orthop 1991; 266: 185–196PubMed
239.
Zurück zum Zitat Snider MP, Clancy WG, McBeath AA. Plantar fascia release for chronic plantar fasciitis in runners. Am J Sports Med 1983; 11: 215–219PubMedCrossRef Snider MP, Clancy WG, McBeath AA. Plantar fascia release for chronic plantar fasciitis in runners. Am J Sports Med 1983; 11: 215–219PubMedCrossRef
240.
Zurück zum Zitat LeMelle DP, Kisilewicz P, Janis LR. Chronic plantar fascial inflammation and fibrosis. Clin Podiatr Med Surg 1990; 7: 385–389PubMed LeMelle DP, Kisilewicz P, Janis LR. Chronic plantar fascial inflammation and fibrosis. Clin Podiatr Med Surg 1990; 7: 385–389PubMed
241.
Zurück zum Zitat Clancy Jr WG. Tendinitis and plantar fasciitis in runners. Orthop 1983; 6: 217–233 Clancy Jr WG. Tendinitis and plantar fasciitis in runners. Orthop 1983; 6: 217–233
242.
Zurück zum Zitat Józsa LG, Kannus P. Human tendons: anatomy, physiology and pathology. Champaign (IL): Human Kinetics, 1997 Józsa LG, Kannus P. Human tendons: anatomy, physiology and pathology. Champaign (IL): Human Kinetics, 1997
243.
Zurück zum Zitat Chard MD, Cawston TE, Riley GP, et al. Rotator cuff degeneration and lateral epicondylitis: a comparative histological study. Ann Rheum Dis 1994; 53: 30–34PubMedCrossRef Chard MD, Cawston TE, Riley GP, et al. Rotator cuff degeneration and lateral epicondylitis: a comparative histological study. Ann Rheum Dis 1994; 53: 30–34PubMedCrossRef
244.
Zurück zum Zitat Åström M, Rausing A. Chronic Achilles tendinopathy: a survey of surgical and histopathologic findings. Clin Orthop 1995; 316: 151–164PubMed Åström M, Rausing A. Chronic Achilles tendinopathy: a survey of surgical and histopathologic findings. Clin Orthop 1995; 316: 151–164PubMed
245.
Zurück zum Zitat Leach RF, Seavey MS, Salter DK. Results of surgery in athletes with plantar fasciitis. Foot Ankle 1986; 7: 156–161PubMed Leach RF, Seavey MS, Salter DK. Results of surgery in athletes with plantar fasciitis. Foot Ankle 1986; 7: 156–161PubMed
246.
Zurück zum Zitat LemontH, Ammirati KM, Usen N. Plantar fasciitis: a degenerative process (fasciosis) without inflammation. J Am Podiatr Med Assoc 2003; 93: 234–237PubMed LemontH, Ammirati KM, Usen N. Plantar fasciitis: a degenerative process (fasciosis) without inflammation. J Am Podiatr Med Assoc 2003; 93: 234–237PubMed
247.
Zurück zum Zitat Kumagai J, Sarkar K, Uhthoff HK. The collagen types in the attachment zone of rotator cuff tendons in the elderly: an immunohistochemical study. J Rheumatol 1994; 21: 2096–2100PubMed Kumagai J, Sarkar K, Uhthoff HK. The collagen types in the attachment zone of rotator cuff tendons in the elderly: an immunohistochemical study. J Rheumatol 1994; 21: 2096–2100PubMed
248.
Zurück zum Zitat Kumai T, Benjamin M. Heel spur formation and the subcalcaneal enthesis of the plantar fascia. J Rheumatol 2002; 29: 1957–1964PubMed Kumai T, Benjamin M. Heel spur formation and the subcalcaneal enthesis of the plantar fascia. J Rheumatol 2002; 29: 1957–1964PubMed
249.
Zurück zum Zitat Ogata S, Uhthoff HK. Acromial enthesopathy and rotator cuff tear: a radiologic and histologic postmortem investigation of the coracoacromial arch. Clin Orthop 1990; 254: 39–48PubMed Ogata S, Uhthoff HK. Acromial enthesopathy and rotator cuff tear: a radiologic and histologic postmortem investigation of the coracoacromial arch. Clin Orthop 1990; 254: 39–48PubMed
250.
Zurück zum Zitat Abreu MR, Chung CB, Mendes L, et al. Plantar calcaneal enthesophytes: new observations regarding sites of origin based on radiographic, MR imaging, anatomic, and paleopathology analysis. Skeletal Radiol 2003; 32: 13–21PubMedCrossRef Abreu MR, Chung CB, Mendes L, et al. Plantar calcaneal enthesophytes: new observations regarding sites of origin based on radiographic, MR imaging, anatomic, and paleopathology analysis. Skeletal Radiol 2003; 32: 13–21PubMedCrossRef
251.
Zurück zum Zitat Skedros JG, Bloebaum RD, Mason MW, et al. Analysis of a tension/compression skeletal system: possible strain-specific differences in the hierarchical organization of bone. Anat Rec 1994; 239: 396–404PubMedCrossRef Skedros JG, Bloebaum RD, Mason MW, et al. Analysis of a tension/compression skeletal system: possible strain-specific differences in the hierarchical organization of bone. Anat Rec 1994; 239: 396–404PubMedCrossRef
252.
Zurück zum Zitat Wainwright AM, Kelly AJ, Winson G. Calcaneal spurs and plantar fasciitis. Foot 1995; 5: 123–126CrossRef Wainwright AM, Kelly AJ, Winson G. Calcaneal spurs and plantar fasciitis. Foot 1995; 5: 123–126CrossRef
253.
Zurück zum Zitat Shaibani A, Workman R, Rothschild BM. The significance of enthesopathy as a skeletal phenomenon. Clin Exp Rheumatol 1993: 11: 399–403PubMed Shaibani A, Workman R, Rothschild BM. The significance of enthesopathy as a skeletal phenomenon. Clin Exp Rheumatol 1993: 11: 399–403PubMed
254.
Zurück zum Zitat Khan KM, Cook JL, Taunton JE, et al. Ovemse tendinosis, not tendinitis: part 1: a new paradigm for a difficult clinical problem. Phys Sportsmed 2000; 28: 38–48PubMedCrossRef Khan KM, Cook JL, Taunton JE, et al. Ovemse tendinosis, not tendinitis: part 1: a new paradigm for a difficult clinical problem. Phys Sportsmed 2000; 28: 38–48PubMedCrossRef
255.
Zurück zum Zitat Maffulli N, Khan KM, Puddu G. Overuse tendon conditions: time to change a confusing terminology. Arthroscopy 1998; 14: 840–843PubMedCrossRef Maffulli N, Khan KM, Puddu G. Overuse tendon conditions: time to change a confusing terminology. Arthroscopy 1998; 14: 840–843PubMedCrossRef
256.
Zurück zum Zitat Almekinders LC, Temple JD. Etiology, diagnosis, and treatment of tendonitis: an analysis of the literature. Med Sci Sports Exerc 1998; 30: 1183–1190PubMedCrossRef Almekinders LC, Temple JD. Etiology, diagnosis, and treatment of tendonitis: an analysis of the literature. Med Sci Sports Exerc 1998; 30: 1183–1190PubMedCrossRef
257.
Zurück zum Zitat Mosier SM, Pomeroy G, Manoli A. Pathoanatomy and etiology of posterior tibial tendon dysfunction. Clin Orthop 1999; 365: 12–22PubMedCrossRef Mosier SM, Pomeroy G, Manoli A. Pathoanatomy and etiology of posterior tibial tendon dysfunction. Clin Orthop 1999; 365: 12–22PubMedCrossRef
258.
Zurück zum Zitat Hess GP, Cappiello WL, Poole RM, et al. Prevention and treatment of overuse tendon injuries. Sports Med 1989; 8: 371–384PubMedCrossRef Hess GP, Cappiello WL, Poole RM, et al. Prevention and treatment of overuse tendon injuries. Sports Med 1989; 8: 371–384PubMedCrossRef
259.
Zurück zum Zitat Backman C, Boquist L, Fridén J, et al. Chronic achilles paratenonitis with tendinosis: an experimental model in the rabbit. J Orthop Res 1990; 8: 541–547PubMedCrossRef Backman C, Boquist L, Fridén J, et al. Chronic achilles paratenonitis with tendinosis: an experimental model in the rabbit. J Orthop Res 1990; 8: 541–547PubMedCrossRef
260.
Zurück zum Zitat Enwemeka CS. Inflammation, cellularity, and fibrillogenesis in regenerating tendon: implications for tendon rehabilitation. Phys Ther 1989; 69: 816–825PubMed Enwemeka CS. Inflammation, cellularity, and fibrillogenesis in regenerating tendon: implications for tendon rehabilitation. Phys Ther 1989; 69: 816–825PubMed
261.
Zurück zum Zitat Herrick RT, Herrick S. Rupture of the plantar fascia in a middle-aged tennis player: a case report. Am J Sports Med 1983; 11: 95PubMedCrossRef Herrick RT, Herrick S. Rupture of the plantar fascia in a middle-aged tennis player: a case report. Am J Sports Med 1983; 11: 95PubMedCrossRef
262.
Zurück zum Zitat Lun V, Meeuwisse W, Vellet D. Spontaneous rupture of plantar fascia. Clin J Sport Med 1999; 9: 48–49PubMedCrossRef Lun V, Meeuwisse W, Vellet D. Spontaneous rupture of plantar fascia. Clin J Sport Med 1999; 9: 48–49PubMedCrossRef
263.
Zurück zum Zitat Rolf C, Guntner P, Ericsater J, et al. Plantar fascia rupture: diagnosis and treatment. J Foot Ankle Surg 1997; 36: 112–114PubMedCrossRef Rolf C, Guntner P, Ericsater J, et al. Plantar fascia rupture: diagnosis and treatment. J Foot Ankle Surg 1997; 36: 112–114PubMedCrossRef
264.
Zurück zum Zitat Józsa L, Réffy A, Kannus P, et al. Pathological alterations in human tendons. Arch Orthop Trauma Surg 1990; 110: 15–21PubMedCrossRef Józsa L, Réffy A, Kannus P, et al. Pathological alterations in human tendons. Arch Orthop Trauma Surg 1990; 110: 15–21PubMedCrossRef
265.
Zurück zum Zitat Kannus P, Natri A. Etiology and pathophysiology of tendon ruptures in sports. Scand J Med Sci Sports 1997; 7: 107–112PubMedCrossRef Kannus P, Natri A. Etiology and pathophysiology of tendon ruptures in sports. Scand J Med Sci Sports 1997; 7: 107–112PubMedCrossRef
266.
Zurück zum Zitat Carpenter JE, Flanagan CL, Thomopoulos S, et al. The effects of overuse combined with intrinsic or extrinsic alterations in an animal model of rotator cuff tendinosis. Am J Sports Med 1998; 26: 801–807PubMed Carpenter JE, Flanagan CL, Thomopoulos S, et al. The effects of overuse combined with intrinsic or extrinsic alterations in an animal model of rotator cuff tendinosis. Am J Sports Med 1998; 26: 801–807PubMed
267.
Zurück zum Zitat Archambault JM, Herzog W, Hart DA. Acute and chronic tendon overuse in a rabbit model. 23rd Annual Meeting of the American Society of Biomechanics; 1999 Oct 21–23; Pittsburgh (PA) Archambault JM, Herzog W, Hart DA. Acute and chronic tendon overuse in a rabbit model. 23rd Annual Meeting of the American Society of Biomechanics; 1999 Oct 21–23; Pittsburgh (PA)
268.
Zurück zum Zitat Kannus P. Etiology and pathophysiology of chronic tendon disorders in sports. Scand J Med Sci Sports 1997; 7: 78–85PubMedCrossRef Kannus P. Etiology and pathophysiology of chronic tendon disorders in sports. Scand J Med Sci Sports 1997; 7: 78–85PubMedCrossRef
269.
Zurück zum Zitat Kraus-Hansen AE, Fackelman GE, Becker C, et al. Preliminary studies on the vascular anatomy of the equine superficial digital flexor tendon. Equine Vet J 1992; 24: 46–51PubMedCrossRef Kraus-Hansen AE, Fackelman GE, Becker C, et al. Preliminary studies on the vascular anatomy of the equine superficial digital flexor tendon. Equine Vet J 1992; 24: 46–51PubMedCrossRef
270.
Zurück zum Zitat Wilson AM, Goodship AE. Exercise-induced hyperthermia as a possible mechanism for tendon degeneration. J Biomech 1994; 27: 899–905PubMedCrossRef Wilson AM, Goodship AE. Exercise-induced hyperthermia as a possible mechanism for tendon degeneration. J Biomech 1994; 27: 899–905PubMedCrossRef
271.
Zurück zum Zitat Józsa L, Kvist M, Balint BJ, et al. The role of recreational sport activity in Achilles tendon rupture: a clinical, pathoanatomical, and sociological study of 292 cases. Am J Sports Med 1989; 17: 338–343PubMedCrossRef Józsa L, Kvist M, Balint BJ, et al. The role of recreational sport activity in Achilles tendon rupture: a clinical, pathoanatomical, and sociological study of 292 cases. Am J Sports Med 1989; 17: 338–343PubMedCrossRef
272.
Zurück zum Zitat Józsa L, Balint JB, Kannus P, et al. Distribution of blood groups in patients with tendon rupture: an analysis of 832 cases. J Bone Joint Surg Br 1989; 71: 272–274PubMed Józsa L, Balint JB, Kannus P, et al. Distribution of blood groups in patients with tendon rupture: an analysis of 832 cases. J Bone Joint Surg Br 1989; 71: 272–274PubMed
273.
Zurück zum Zitat Kujala UM, Jarvinen M, Natri A, et al. ABO blood groups and musculoskeletal injuries. Injury 1992; 23: 131–133PubMedCrossRef Kujala UM, Jarvinen M, Natri A, et al. ABO blood groups and musculoskeletal injuries. Injury 1992; 23: 131–133PubMedCrossRef
274.
Zurück zum Zitat Maffulli N, Reaper JA, Waterston SW, et al. ABO blood groups and achilles tendon rupture in the Grampian Region of Scotland. Clin J Sport Med 2000; 10: 269–271PubMedCrossRef Maffulli N, Reaper JA, Waterston SW, et al. ABO blood groups and achilles tendon rupture in the Grampian Region of Scotland. Clin J Sport Med 2000; 10: 269–271PubMedCrossRef
275.
Zurück zum Zitat Leppilahti J, Puranen J, Orava S. ABO blood group and Achilles tendon rupture. Ann Chir Gynaecol 1996; 85: 369–371PubMed Leppilahti J, Puranen J, Orava S. ABO blood group and Achilles tendon rupture. Ann Chir Gynaecol 1996; 85: 369–371PubMed
276.
Zurück zum Zitat Chandler TJ, Kibler WB. A biomechanical approach to the prevention, treatment, and rehabilitation of plantar fasciitis. Sports Med 1993; 15: 344–352PubMedCrossRef Chandler TJ, Kibler WB. A biomechanical approach to the prevention, treatment, and rehabilitation of plantar fasciitis. Sports Med 1993; 15: 344–352PubMedCrossRef
277.
Zurück zum Zitat Cornwall MW, McPoil TG. Plantar fasciitis: etiology and treatment. J Orthop Sports Phys Ther 1999; 29: 756–760PubMed Cornwall MW, McPoil TG. Plantar fasciitis: etiology and treatment. J Orthop Sports Phys Ther 1999; 29: 756–760PubMed
278.
Zurück zum Zitat Murphy DF, Connolly DAJ, Beynnon BD. Risk factors for lower extremity injury: a review of the literature. Br J Sports Med 2002; 37: 13–29CrossRef Murphy DF, Connolly DAJ, Beynnon BD. Risk factors for lower extremity injury: a review of the literature. Br J Sports Med 2002; 37: 13–29CrossRef
279.
280.
Zurück zum Zitat Taunton JE, Clement DB, McNicol K. Plantar fasciitis in runners. Can J Appl Sport Sci 1982; 7: 41–44PubMed Taunton JE, Clement DB, McNicol K. Plantar fasciitis in runners. Can J Appl Sport Sci 1982; 7: 41–44PubMed
281.
Zurück zum Zitat Kibler WB, Goldberg C, Chandler J. Functional biomechanical deficits in running athletes with plantar fasciitis. Am J Sports Med 1991; 19: 66–71PubMedCrossRef Kibler WB, Goldberg C, Chandler J. Functional biomechanical deficits in running athletes with plantar fasciitis. Am J Sports Med 1991; 19: 66–71PubMedCrossRef
282.
Zurück zum Zitat Warren BL. Anatomical factors associated with predicting plantar fasciitis in long-distance runners. Med Sci Sports Exerc 1984; 16: 60–63PubMed Warren BL. Anatomical factors associated with predicting plantar fasciitis in long-distance runners. Med Sci Sports Exerc 1984; 16: 60–63PubMed
283.
Zurück zum Zitat Warren BL, Jones CJ. Predicting plantar fasciitis in runners. Med Sci Sports Exerc 1987; 19: 71–73PubMed Warren BL, Jones CJ. Predicting plantar fasciitis in runners. Med Sci Sports Exerc 1987; 19: 71–73PubMed
284.
Zurück zum Zitat Messier SP, Pittala KA. Etiologic factors associated with selected running injuries. Med Sci Sports Exerc 1988; 20: 501–505PubMed Messier SP, Pittala KA. Etiologic factors associated with selected running injuries. Med Sci Sports Exerc 1988; 20: 501–505PubMed
285.
Zurück zum Zitat Hill JJ, Cutting PJ. Heel pain and body weight. Foot Ankle 1989; 9: 254–256PubMed Hill JJ, Cutting PJ. Heel pain and body weight. Foot Ankle 1989; 9: 254–256PubMed
286.
Zurück zum Zitat Prichasuk S. The heel pad in plantar heel pain. J Bone Joint Surg Br 1994; 76: 140–142PubMed Prichasuk S. The heel pad in plantar heel pain. J Bone Joint Surg Br 1994; 76: 140–142PubMed
287.
Zurück zum Zitat Turgut A, GokturkE, Kose N, et al. The relationship of heel pad elasticity and plantar heel pain. Clin Orthop 1999; 360: 191–196PubMedCrossRef Turgut A, GokturkE, Kose N, et al. The relationship of heel pad elasticity and plantar heel pain. Clin Orthop 1999; 360: 191–196PubMedCrossRef
288.
Zurück zum Zitat Tsai WC, Wang CL, Hsu TC, et al. The mechanical properties of the heel pad in unilateral plantar heel pain syndrome. Foot Ankle Int 1999; 20: 663–668PubMed Tsai WC, Wang CL, Hsu TC, et al. The mechanical properties of the heel pad in unilateral plantar heel pain syndrome. Foot Ankle Int 1999; 20: 663–668PubMed
289.
Zurück zum Zitat Wilk BR, Fisher KL, Gutierrez W. Defective running shoes as a contributing factor in plantar fasciitis in a triathlete. J Orthop Sports Phys Ther 2000; 30: 21–28PubMed Wilk BR, Fisher KL, Gutierrez W. Defective running shoes as a contributing factor in plantar fasciitis in a triathlete. J Orthop Sports Phys Ther 2000; 30: 21–28PubMed
290.
Zurück zum Zitat Rano JA, Fallet LM, Savoy-Moore RT. Correlation of heel pain with body mass index and other characteristics of heel pain. J Foot Ankle Surg 2001; 40: 351–356PubMed Rano JA, Fallet LM, Savoy-Moore RT. Correlation of heel pain with body mass index and other characteristics of heel pain. J Foot Ankle Surg 2001; 40: 351–356PubMed
291.
Zurück zum Zitat Rome K, Campbell R, Hint A, et al. Heel pad thickness: a contributing factor associated with plantar heel pain in young adults. Foot Ankle Int 2002; 23: 142–174PubMed Rome K, Campbell R, Hint A, et al. Heel pad thickness: a contributing factor associated with plantar heel pain in young adults. Foot Ankle Int 2002; 23: 142–174PubMed
292.
Zurück zum Zitat Whittle MW. Generation and attenuation of transient impulsive forces beneath the foot: a review. Gait Posture 1999; 10: 264–275PubMedCrossRef Whittle MW. Generation and attenuation of transient impulsive forces beneath the foot: a review. Gait Posture 1999; 10: 264–275PubMedCrossRef
293.
Zurück zum Zitat Spears IR, Miller-Young JE, Waters M, et al. The effect of loading conditions on stress in the barefooted heel pad. Med Sci Sports Exerc 2005; 37: 1030–1036PubMed Spears IR, Miller-Young JE, Waters M, et al. The effect of loading conditions on stress in the barefooted heel pad. Med Sci Sports Exerc 2005; 37: 1030–1036PubMed
294.
Zurück zum Zitat Liddle D, Rome K, Howe T. Vertical ground reaction forces in patients with unilateral plantar heel pain: a pilot study. Gait Posture 2000: 11: 62–66PubMedCrossRef Liddle D, Rome K, Howe T. Vertical ground reaction forces in patients with unilateral plantar heel pain: a pilot study. Gait Posture 2000: 11: 62–66PubMedCrossRef
295.
Zurück zum Zitat Katoh Y, Chao EYS, Laughman RK, et al. Biomechanical analysis of foot function during gait and clinical applications. Clin Orthop 1983; 177: 23–33PubMed Katoh Y, Chao EYS, Laughman RK, et al. Biomechanical analysis of foot function during gait and clinical applications. Clin Orthop 1983; 177: 23–33PubMed
296.
Zurück zum Zitat Katoh Y, Chao EYS, Morrey BF, et al. Objective technique for evaluating painful heel syndrome and its treatment. Foot Ankle 1983; 3: 227–237PubMed Katoh Y, Chao EYS, Morrey BF, et al. Objective technique for evaluating painful heel syndrome and its treatment. Foot Ankle 1983; 3: 227–237PubMed
297.
Zurück zum Zitat Daly PJ, Kitaoka HB, Chao EYS. Plantar fasciotomy for intractable plantar fasciitis: clinical results and biomechanical evaluation. Foot Ankle 1992; 13: 188–195PubMed Daly PJ, Kitaoka HB, Chao EYS. Plantar fasciotomy for intractable plantar fasciitis: clinical results and biomechanical evaluation. Foot Ankle 1992; 13: 188–195PubMed
298.
Zurück zum Zitat Wearing SC, Smeathers JE, Urry SR. The effect of plantar fasciitis on vertical foot-ground reaction force. Clin Orthop 2003; 409: 175–185PubMedCrossRef Wearing SC, Smeathers JE, Urry SR. The effect of plantar fasciitis on vertical foot-ground reaction force. Clin Orthop 2003; 409: 175–185PubMedCrossRef
299.
Zurück zum Zitat Katoh Y, Chao EYS, Morrey BF, et al. Objective evaluation of painful heel syndrome by gait analysis. In: Matsui H, Kobayashi K, editors. Biomechanics VIII: proceedings of the 8th International Congress of Biomechanics. Champaign (IL): Human Kinetics, 1981: 490–497 Katoh Y, Chao EYS, Morrey BF, et al. Objective evaluation of painful heel syndrome by gait analysis. In: Matsui H, Kobayashi K, editors. Biomechanics VIII: proceedings of the 8th International Congress of Biomechanics. Champaign (IL): Human Kinetics, 1981: 490–497
300.
Zurück zum Zitat Kelly AJ, Wainwright AM, Winson IG. Plantar pressures are normal in plantar fasciitis. Foot Dis 1995; 11: 129–132 Kelly AJ, Wainwright AM, Winson IG. Plantar pressures are normal in plantar fasciitis. Foot Dis 1995; 11: 129–132
301.
Zurück zum Zitat Bedi HS, Love BRT. Differences in impulse distribution patterns in patients with plantar fasciitis. Foot Ankle Int 1998; 19: 153–156PubMed Bedi HS, Love BRT. Differences in impulse distribution patterns in patients with plantar fasciitis. Foot Ankle Int 1998; 19: 153–156PubMed
302.
Zurück zum Zitat Kanatli U, Yetkin H, Simsek A, et al. The relationship of the heel pad compressibility and plantar pressure distribution. Foot Ankle Int 2001; 22: 662–665PubMed Kanatli U, Yetkin H, Simsek A, et al. The relationship of the heel pad compressibility and plantar pressure distribution. Foot Ankle Int 2001; 22: 662–665PubMed
303.
Zurück zum Zitat Kwong PK, Kay D, Voner RT, et al. Plantar fasciitis: mechanics and pathomechanics of treatment. Clin Sports Med 1988; 7: 119–126PubMed Kwong PK, Kay D, Voner RT, et al. Plantar fasciitis: mechanics and pathomechanics of treatment. Clin Sports Med 1988; 7: 119–126PubMed
304.
Zurück zum Zitat Huang YC, Wang LY, Wang HC, et al. The relationship between the flexible flatfoot and plantar fasciitis: ultrasonographic evaluation. Chang Gung Med J 2004; 27: 443–448PubMed Huang YC, Wang LY, Wang HC, et al. The relationship between the flexible flatfoot and plantar fasciitis: ultrasonographic evaluation. Chang Gung Med J 2004; 27: 443–448PubMed
305.
Zurück zum Zitat Kosmahl EM, Kosmahl HE. Painful plantar heel, plantar fasciitis and calcaneal spur: etiology and treatment. J Orthop Sports Phys Ther 1987; 9: 17–24PubMed Kosmahl EM, Kosmahl HE. Painful plantar heel, plantar fasciitis and calcaneal spur: etiology and treatment. J Orthop Sports Phys Ther 1987; 9: 17–24PubMed
306.
Zurück zum Zitat Ross M. Use of the tissue stress model as a paradigm for developing an examination and management plan for a patient with plantar fasciitis. J Am Podiatr Med Assoc 2002; 92: 499–506PubMed Ross M. Use of the tissue stress model as a paradigm for developing an examination and management plan for a patient with plantar fasciitis. J Am Podiatr Med Assoc 2002; 92: 499–506PubMed
307.
Zurück zum Zitat Prichasuk S, Subhadrabandhu T. The relationship of pes planus and calcaneal spur to plantar heel pain. Clin Orthop 1994; 306: 192–196PubMed Prichasuk S, Subhadrabandhu T. The relationship of pes planus and calcaneal spur to plantar heel pain. Clin Orthop 1994; 306: 192–196PubMed
308.
Zurück zum Zitat Shama SS, Kominsky SJ, Lemont H. Prevalence of non painful heel spur and its relation to postural foot position. J Am Podiatry Assoc 1983; 73: 122–123PubMed Shama SS, Kominsky SJ, Lemont H. Prevalence of non painful heel spur and its relation to postural foot position. J Am Podiatry Assoc 1983; 73: 122–123PubMed
309.
Zurück zum Zitat Lyman J, Weinhold PS, Almekinders LC. Strain behavior of the distal achilles tendon: implications for insertional achilles tendinopathy. Am J Sports Med 2004; 32: 457–461PubMedCrossRef Lyman J, Weinhold PS, Almekinders LC. Strain behavior of the distal achilles tendon: implications for insertional achilles tendinopathy. Am J Sports Med 2004; 32: 457–461PubMedCrossRef
310.
Zurück zum Zitat Almekinders LC, Vellema JH, Weinhold PS. Strain patterns in the patellar tendon and the implications for patellar tendinopathy. Knee Surg Sports Traumatol Arthrosc 2002; 10: 2–5PubMedCrossRef Almekinders LC, Vellema JH, Weinhold PS. Strain patterns in the patellar tendon and the implications for patellar tendinopathy. Knee Surg Sports Traumatol Arthrosc 2002; 10: 2–5PubMedCrossRef
311.
Zurück zum Zitat Almekinders LC, Weinhold PS, Maffulli N. Compression etiology in tendinopathy. Clin Sports Med 2003; 22: 703–710PubMedCrossRef Almekinders LC, Weinhold PS, Maffulli N. Compression etiology in tendinopathy. Clin Sports Med 2003; 22: 703–710PubMedCrossRef
Metadaten
Titel
The Pathomechanics of Plantar Fasciitis
verfasst von
Dr Scott C. Wearing
James E. Smeathers
Stephen R. Urry
Ewald M. Hennig
Andrew P. Hills
Publikationsdatum
01.07.2006
Verlag
Springer International Publishing
Erschienen in
Sports Medicine / Ausgabe 7/2006
Print ISSN: 0112-1642
Elektronische ISSN: 1179-2035
DOI
https://doi.org/10.2165/00007256-200636070-00004

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