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Erschienen in: Surgical and Radiologic Anatomy 7/2007

01.10.2007 | Original Article

Clinical significance of musculoskeletal finite element model of the second and the fifth foot ray with metatarsal cavities and calcaneal sinus

verfasst von: Lijun Wu, Shizhen Zhong, Rongmei Zheng, Jia Qu, Zihai Ding, Maolin Tang, Xiangyang Wang, Jianjun Hong, Xiangwu Zheng, Xiaoping Wang

Erschienen in: Surgical and Radiologic Anatomy | Ausgabe 7/2007

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Abstract

Aim

The aim of this study was to establish musculoskeletal finite element (FE) model of the second and the fifth foot ray accounting for metatarsal cavities and calcaneal sinus. The model was then used to predict the effects of metatarsal cavities and calcaneal sinus on internal stresses/strains of plantar longitudinal arches.

Materials and methods

The geometry of foot bones and soft tissues were constructed by CT and MRI images of Virtual Chinese Human “female No. 1”. Two types of nonlinear FE models of sagittal foot rays were developed with or without metatarsal cavities and calcaneal sinus using ANSYS © software package. The sagittal trabecular architecture of metatarsals and calcaneus were obtained by cutting, defatting and bleaching fresh foot specimen of a cadaver.

Results

The model proposed was able to describe the isostatic stress flows in sagittal planes of plantar longitudinal arches. The size of metatarsal cavity or calcaneal sinus could affect stress/strain distributions on metatarsals and calcaneus, but had almost no effects on stress/strain of other foot bones and plantar soft tissues. During balance standing, the maximum von Mises stresses were predicted at the shaft and the basis of metatarsals, while the maximum strains of bony regions were found around metatarsal cavities. Among plantar soft tissues, relative high tensions were burdened by plantar fascia, followed by long plantar ligament. The minimum tensions occurred in plantar intrinsic muscles.

Conclusions

The study shows that the tension/compression stress flows are geometrically similar with the tension/compression trabecular architectures in sagittal sections of metatarsal and calcaneus. The FE predictions of stress/strain concentration on metatarsals and fascia are useful in enhancing biomechanical knowledge on metatarsal stress fractures and plantar fasciitis.
Literatur
2.
Zurück zum Zitat Buchler P, Ramaniraka NA, Rakotomanana LR et al (2002) A finite element model of the shoulder: application to the comparison of normal and osteoarthritic joints. Clin Biomech 17:630–639CrossRef Buchler P, Ramaniraka NA, Rakotomanana LR et al (2002) A finite element model of the shoulder: application to the comparison of normal and osteoarthritic joints. Clin Biomech 17:630–639CrossRef
3.
Zurück zum Zitat Cheung JT, Zhang M, An KN (2004) Effects of plantar fascia stiffness on the biomechanical responses of the ankle-foot complex. Clin Biomech 19:839–846CrossRef Cheung JT, Zhang M, An KN (2004) Effects of plantar fascia stiffness on the biomechanical responses of the ankle-foot complex. Clin Biomech 19:839–846CrossRef
4.
Zurück zum Zitat Cheung JT, Zhang M, Leung AK, Fan YB (2005) Three-dimensional finite element analysis of the foot during standing: a material sensitivity study. J Biomech 38:1045–1054PubMedCrossRef Cheung JT, Zhang M, Leung AK, Fan YB (2005) Three-dimensional finite element analysis of the foot during standing: a material sensitivity study. J Biomech 38:1045–1054PubMedCrossRef
5.
Zurück zum Zitat Donahue SW, Sharkey NA (1999) Strains in the metatarsals during the stance phase of gait: Implications for stress fractures. J Bone Joint Surg Am 81:1236–1244PubMed Donahue SW, Sharkey NA (1999) Strains in the metatarsals during the stance phase of gait: Implications for stress fractures. J Bone Joint Surg Am 81:1236–1244PubMed
6.
Zurück zum Zitat Gefen A (2002) Stress analysis of the standing foot following surgical plantar fascia release. J Biomech 35:629–637PubMedCrossRef Gefen A (2002) Stress analysis of the standing foot following surgical plantar fascia release. J Biomech 35:629–637PubMedCrossRef
7.
Zurück zum Zitat Gefen A, Megido-Ravid M, Itzchak Y, Arcan M (2000) Biomechanical analysis of the three-dimensional foot structure during gait: a basic tool for clinical applications. J Biomech Eng 122:630–639PubMedCrossRef Gefen A, Megido-Ravid M, Itzchak Y, Arcan M (2000) Biomechanical analysis of the three-dimensional foot structure during gait: a basic tool for clinical applications. J Biomech Eng 122:630–639PubMedCrossRef
8.
Zurück zum Zitat Gefen A, Seliktar R (2004) Comparison of the trabecular architecture and the isostatic stress flow in the human calcaneus. Med Eng Phys 26:119–129PubMedCrossRef Gefen A, Seliktar R (2004) Comparison of the trabecular architecture and the isostatic stress flow in the human calcaneus. Med Eng Phys 26:119–129PubMedCrossRef
9.
Zurück zum Zitat Gill LH (1997) Plantar fasciitis: diagnosis and conservative management. J Am Acad Orthop Surg 5:109–117PubMed Gill LH (1997) Plantar fasciitis: diagnosis and conservative management. J Am Acad Orthop Surg 5:109–117PubMed
10.
Zurück zum Zitat Gao S (2004) Atlas of practical anatomy of lower limb, 2nd edn. Shanghai Science & Technique Publishing, Shanghai Gao S (2004) Atlas of practical anatomy of lower limb, 2nd edn. Shanghai Science & Technique Publishing, Shanghai
11.
Zurück zum Zitat Jacob S, Patil MK (1999) Three-dimensional foot modeling and analysis of stress of normal and early stage Hansen’s disease with muscle paralysis. J Rehab Res Dev 36:252–263 Jacob S, Patil MK (1999) Three-dimensional foot modeling and analysis of stress of normal and early stage Hansen’s disease with muscle paralysis. J Rehab Res Dev 36:252–263
12.
Zurück zum Zitat Kirby KA (2001) What future direction should podiatric biomechanics take? Clin Podiatr Med Surg 18:719–723PubMed Kirby KA (2001) What future direction should podiatric biomechanics take? Clin Podiatr Med Surg 18:719–723PubMed
13.
Zurück zum Zitat Lemmon D, Cavanagh P (1997) Finite element modelling of plantar pressure beneath the second ray with flexor muscle loading. Clin Biomech 12:S13–S14CrossRef Lemmon D, Cavanagh P (1997) Finite element modelling of plantar pressure beneath the second ray with flexor muscle loading. Clin Biomech 12:S13–S14CrossRef
14.
Zurück zum Zitat Mow VC, Flatow EL, Ateshian GA (2000) Biomechanics. In: Buckwalter JA, Einhorn TA, Simon SR (eds) Orthopaedic basic science: biology and biomechanics of the musculoskeletal system, 2nd edn. American Academy of Orthopaedic Surgeons, Rosemont, IL Mow VC, Flatow EL, Ateshian GA (2000) Biomechanics. In: Buckwalter JA, Einhorn TA, Simon SR (eds) Orthopaedic basic science: biology and biomechanics of the musculoskeletal system, 2nd edn. American Academy of Orthopaedic Surgeons, Rosemont, IL
15.
Zurück zum Zitat Nakamura S, Crowninshield RD, Cooper RR (1981) An analysis of soft tissues loading in the foot-a preliminary report. Bull Prosth Res 18:27–34 Nakamura S, Crowninshield RD, Cooper RR (1981) An analysis of soft tissues loading in the foot-a preliminary report. Bull Prosth Res 18:27–34
16.
Zurück zum Zitat Prior TD, Tollafield DR (1997) Sports injuries. In: Tollafield DR, Merriman LM (eds) Clinical skills in treating the foot. Churchill Livingstone, New York Prior TD, Tollafield DR (1997) Sports injuries. In: Tollafield DR, Merriman LM (eds) Clinical skills in treating the foot. Churchill Livingstone, New York
17.
Zurück zum Zitat Simkin A (1982). Structural analysis of the human foot in standing posture. Ph.D. Thesis. Tel Aviv University, Tel Aviv Simkin A (1982). Structural analysis of the human foot in standing posture. Ph.D. Thesis. Tel Aviv University, Tel Aviv
18.
Zurück zum Zitat Simon SR, Alaranta H, An KN (2000) Kinesiology. In: Buckwalter JA, Einhorn, TA, Simon SR (eds) Orthopaedic basic science: biology and biomechanics of the musculoskeletal system, 2nd edn. American Academy of Orthopaedic Surgeons, Rosemont, IL Simon SR, Alaranta H, An KN (2000) Kinesiology. In: Buckwalter JA, Einhorn, TA, Simon SR (eds) Orthopaedic basic science: biology and biomechanics of the musculoskeletal system, 2nd edn. American Academy of Orthopaedic Surgeons, Rosemont, IL
19.
Zurück zum Zitat Sabry FF, Ebraheim NA, Mehalik JN, Rezcallah AT (2000) Internal architecture of the calcaneus: implications for calcaneus fractures. Foot Ankle Int 21:114–118PubMed Sabry FF, Ebraheim NA, Mehalik JN, Rezcallah AT (2000) Internal architecture of the calcaneus: implications for calcaneus fractures. Foot Ankle Int 21:114–118PubMed
20.
Zurück zum Zitat Sharkey NA, Ferris L, Smith TS et al (1995) Strain and loading of the second metatarsal during heel-lift. J Bone Joint Surg Am 77:1050–1057PubMed Sharkey NA, Ferris L, Smith TS et al (1995) Strain and loading of the second metatarsal during heel-lift. J Bone Joint Surg Am 77:1050–1057PubMed
21.
Zurück zum Zitat Wu L, Zhong S, Li Y, Zhao W (2004) Biomechanical mechanisms of overuse injuries of second plantar longitudinal arch in flat foot. Zhonghua Yi Xue Za Zhi 84:1000–1004PubMed Wu L, Zhong S, Li Y, Zhao W (2004) Biomechanical mechanisms of overuse injuries of second plantar longitudinal arch in flat foot. Zhonghua Yi Xue Za Zhi 84:1000–1004PubMed
22.
Zurück zum Zitat Wu L (2007) Nonlinear finite element analysis for musculoskeletal biomechanics of medial and lateral plantar longitudinal arch of Virtual Chinese Human after plantar ligamentous structure failures. Clin Biomech 22:221–229CrossRef Wu L (2007) Nonlinear finite element analysis for musculoskeletal biomechanics of medial and lateral plantar longitudinal arch of Virtual Chinese Human after plantar ligamentous structure failures. Clin Biomech 22:221–229CrossRef
23.
Zurück zum Zitat Zhang M, Mak AF (1999) In vivo friction properties of human skin. Prosthet Orthot Int 23:135–141PubMed Zhang M, Mak AF (1999) In vivo friction properties of human skin. Prosthet Orthot Int 23:135–141PubMed
24.
Zurück zum Zitat Zhong S, Yuan L, Tang L et al (2003) Research report of experimental database establishment of digitized virtual Chinese No.1 female. J First Mil Med Univ 23:196–200 Zhong S, Yuan L, Tang L et al (2003) Research report of experimental database establishment of digitized virtual Chinese No.1 female. J First Mil Med Univ 23:196–200
Metadaten
Titel
Clinical significance of musculoskeletal finite element model of the second and the fifth foot ray with metatarsal cavities and calcaneal sinus
verfasst von
Lijun Wu
Shizhen Zhong
Rongmei Zheng
Jia Qu
Zihai Ding
Maolin Tang
Xiangyang Wang
Jianjun Hong
Xiangwu Zheng
Xiaoping Wang
Publikationsdatum
01.10.2007
Verlag
Springer-Verlag
Erschienen in
Surgical and Radiologic Anatomy / Ausgabe 7/2007
Print ISSN: 0930-1038
Elektronische ISSN: 1279-8517
DOI
https://doi.org/10.1007/s00276-007-0231-3

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