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Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy 9/2014

01.09.2014 | Knee

The arcuate ligament revisited: role of the posterolateral structures in providing static stability in the knee joint

verfasst von: M. Thaunat, C. Pioger, R. Chatellard, J. Conteduca, A. Khaleel, B. Sonnery-Cottet

Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy | Ausgabe 9/2014

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Abstract

Purpose

To determine the involvement of the posterolateral structures including the lateral collateral ligament, the popliteus muscle–tendon unit, the arcuate ligament (popliteofibular ligament, fabellofibular ligament, popliteomeniscal fascicles, capsular arm of short head of the biceps femoris and anterolateral ligament) and the posterior cruciate ligament in providing restraint to excessive recurvatum, tibial posterior translation and external tibial rotation at 90° of flexion.

Methods

Ten fresh-frozen cadaveric knees were tested with dial test, posterior drawer test and recurvatum test. The values were collected, using a surgical navigation system, on intact knees, following a serial section of the posterolateral corner (lateral collateral ligament, arcuate ligament and popliteus muscle–tendon unit), followed by the additional section of the posterior cruciate ligament.

Results

The mean tibial external rotation, recurvatum and posterior drawer were, respectively, measured at 9° ± 4°, 2° ± 3° and 9 ± 1 mm on intact knees. These values increase to 12° ± 5°, 3° ± 2° and 9 ± 1 mm after cutting the lateral collateral ligament; 17° ± 6° (p < 0.05), 3° ± 2° and 10 ± 1 mm after sectioning the arcuate ligament; 18° ± 7°, 3° ± 2° and 10 ± 1 mm after sectioning the popliteus muscle–tendon unit and 27° ± 6° (p < 0.05), 5° ± 3° (p < 0.05) and 28 ± 2 mm (p < 0.05) after the additional section of the posterior cruciate ligament.

Conclusion

Among the different structures of the posterolateral corner, only the arcuate ligament has a significant role in restricting excessive primary and coupled external rotation. The popliteus muscle–tendon unit is not a primary static stabilizer to tibial external rotation at 90° of knee flexion. The posterior cruciate ligament is the primary restraint to excessive recurvatum and posterior tibial translation. The posterior cruciate ligament and the arcuate ligament have predominant role for the posterolateral stability of the knee. The functional restoration of these ligaments is an important part of the surgical treatment of posterolateral ligamentous injuries.
Literatur
1.
Zurück zum Zitat Bae JH, Choi IC, Suh SW, Lim HC, Bae TS, Nha KW, Wang JH (2008) Evaluation of the reliability of the dial test for posterolateral rotatory instability: a cadaveric study using an isotonic rotation machine. Arthroscopy 24:593–598PubMedCrossRef Bae JH, Choi IC, Suh SW, Lim HC, Bae TS, Nha KW, Wang JH (2008) Evaluation of the reliability of the dial test for posterolateral rotatory instability: a cadaveric study using an isotonic rotation machine. Arthroscopy 24:593–598PubMedCrossRef
2.
Zurück zum Zitat Cooper DE (1991) Tests for posterolateral instability of the knee in normal subjects: results of examination under anesthesia. J Bone Joint Surg Am 73:30–36PubMed Cooper DE (1991) Tests for posterolateral instability of the knee in normal subjects: results of examination under anesthesia. J Bone Joint Surg Am 73:30–36PubMed
3.
Zurück zum Zitat Feeley BT, Muller MS, Sherman S, Allen AA, Pearle AD (2010) Comparison of posterolateral corner reconstructions using computer-assisted navigation. Arthroscopy 26:1088–1095PubMedCrossRef Feeley BT, Muller MS, Sherman S, Allen AA, Pearle AD (2010) Comparison of posterolateral corner reconstructions using computer-assisted navigation. Arthroscopy 26:1088–1095PubMedCrossRef
4.
Zurück zum Zitat Gollehon DL, Torzilli PA, Warren RF (1987) The role of the posterolateral and cruciate ligaments in the stability of the human knee: a biomechanical study. J Bone Joint Surg Am 69:233–242PubMed Gollehon DL, Torzilli PA, Warren RF (1987) The role of the posterolateral and cruciate ligaments in the stability of the human knee: a biomechanical study. J Bone Joint Surg Am 69:233–242PubMed
5.
Zurück zum Zitat Harner CD, Vogrin TM, Höher J, Ma CB, Woo SL (2000) Biomechanical analysis of a posterior cruciate ligament reconstruction. Deficiency of the posterolateral structures as a cause of graft failure. Am J Sports Med 28:32–39PubMed Harner CD, Vogrin TM, Höher J, Ma CB, Woo SL (2000) Biomechanical analysis of a posterior cruciate ligament reconstruction. Deficiency of the posterolateral structures as a cause of graft failure. Am J Sports Med 28:32–39PubMed
6.
Zurück zum Zitat Hefti F, Müller W, Jakob RP, Stäubli HU (1993) Evaluation of knee ligament injuries with the IKDC form. Knee Surg Sports Traumatol Arthrosc 1:226–234PubMedCrossRef Hefti F, Müller W, Jakob RP, Stäubli HU (1993) Evaluation of knee ligament injuries with the IKDC form. Knee Surg Sports Traumatol Arthrosc 1:226–234PubMedCrossRef
7.
Zurück zum Zitat Jung YB, Lee YS, Jung HJ, Nam CH (2009) Evaluation of posterolateral rotatory knee instability using the dial test according to tibial positioning. Arthroscopy 25:257–261PubMedCrossRef Jung YB, Lee YS, Jung HJ, Nam CH (2009) Evaluation of posterolateral rotatory knee instability using the dial test according to tibial positioning. Arthroscopy 25:257–261PubMedCrossRef
8.
Zurück zum Zitat Kaplan EB (1957) Surgical approach to the lateral (peroneal) side of the knee joint. Surg Gynecol Obstet 104:346–356PubMed Kaplan EB (1957) Surgical approach to the lateral (peroneal) side of the knee joint. Surg Gynecol Obstet 104:346–356PubMed
9.
Zurück zum Zitat Khadem R, Yeh CC, Sadeghi-Tehrani M, Bax MR, Johnson JA, Welch JN, Wilkinson EP, Shahidi R (2000) Comparative tracking error analysis of five different optical tracking systems. Comput Aided Surg 5:98–107PubMedCrossRef Khadem R, Yeh CC, Sadeghi-Tehrani M, Bax MR, Johnson JA, Welch JN, Wilkinson EP, Shahidi R (2000) Comparative tracking error analysis of five different optical tracking systems. Comput Aided Surg 5:98–107PubMedCrossRef
10.
Zurück zum Zitat Kim SJ, Choi DH, Hwang BY (2012) The influence of posterolateral rotatory instability on ACL reconstruction: comparison between isolated ACL reconstruction and ACL reconstruction combined with posterolateral corner reconstruction. J Bone Joint Surg Am 94:253–259PubMedCrossRef Kim SJ, Choi DH, Hwang BY (2012) The influence of posterolateral rotatory instability on ACL reconstruction: comparison between isolated ACL reconstruction and ACL reconstruction combined with posterolateral corner reconstruction. J Bone Joint Surg Am 94:253–259PubMedCrossRef
11.
Zurück zum Zitat LaPrade RF (2006) History of the nomenclature and study of the anatomy of the posterolateral knee. In: LaPrade RF Posterolateral knee injuries: anatomy, evaluation, and treatment. Thieme, New York, 9–49 LaPrade RF (2006) History of the nomenclature and study of the anatomy of the posterolateral knee. In: LaPrade RF Posterolateral knee injuries: anatomy, evaluation, and treatment. Thieme, New York, 9–49
12.
Zurück zum Zitat LaPrade RF, Wozniczka JK, Stellmaker MP, Wijdicks CA (2010) Analysis of the static function of the popliteus tendon and evaluation of an anatomic reconstruction: the “fifth ligament” of the knee. Am J Sports Med 38:543–549PubMedCrossRef LaPrade RF, Wozniczka JK, Stellmaker MP, Wijdicks CA (2010) Analysis of the static function of the popliteus tendon and evaluation of an anatomic reconstruction: the “fifth ligament” of the knee. Am J Sports Med 38:543–549PubMedCrossRef
13.
Zurück zum Zitat LaPrade RF, Johansen S, Agel J, Risberg MA, Moksnes H, Engebretsen L (2010) Outcomes of an anatomic posterolateral knee reconstruction. J Bone Joint Surg Am 92:16–22PubMedCrossRef LaPrade RF, Johansen S, Agel J, Risberg MA, Moksnes H, Engebretsen L (2010) Outcomes of an anatomic posterolateral knee reconstruction. J Bone Joint Surg Am 92:16–22PubMedCrossRef
14.
Zurück zum Zitat LaPrade RF, Resig S, Wentorf F, Lewis JL (1999) The effects of grade III posterolateral knee complex injuries on anterior cruciate ligament graft force: a biomechanical analysis. Am J Sports Med 27:469–475PubMed LaPrade RF, Resig S, Wentorf F, Lewis JL (1999) The effects of grade III posterolateral knee complex injuries on anterior cruciate ligament graft force: a biomechanical analysis. Am J Sports Med 27:469–475PubMed
15.
Zurück zum Zitat Lim HC, Bae JH, Bae TS, Moon BC, Shyam AK, Wang JH (2012) Relative role changing of lateral collateral ligament on the posterolateral rotatory instability according to the knee flexion angles: a biomechanical comparative study of role of lateral collateral ligament and popliteofibular ligament. Arch Orthop Trauma Surg 132:1631–1636PubMedCrossRef Lim HC, Bae JH, Bae TS, Moon BC, Shyam AK, Wang JH (2012) Relative role changing of lateral collateral ligament on the posterolateral rotatory instability according to the knee flexion angles: a biomechanical comparative study of role of lateral collateral ligament and popliteofibular ligament. Arch Orthop Trauma Surg 132:1631–1636PubMedCrossRef
16.
Zurück zum Zitat Markolf KL, Graves BR, Sigward SM, Jackson SR, McAllister DR (2007) How well do anatomical reconstructions of the posterolateral corner restore varus stability to the posterior cruciate ligament-reconstructed knee? Am J Sports Med 35:1117–1122PubMedCrossRef Markolf KL, Graves BR, Sigward SM, Jackson SR, McAllister DR (2007) How well do anatomical reconstructions of the posterolateral corner restore varus stability to the posterior cruciate ligament-reconstructed knee? Am J Sports Med 35:1117–1122PubMedCrossRef
17.
Zurück zum Zitat McCarthy M, Camarda L, Wijdicks CA, Johansen S, Engebretsen L, Laprade RF (2010) Anatomic posterolateral knee reconstructions require a popliteofibular ligament reconstruction through a tibial tunnel. Am J Sports Med 38:1674–1681PubMedCrossRef McCarthy M, Camarda L, Wijdicks CA, Johansen S, Engebretsen L, Laprade RF (2010) Anatomic posterolateral knee reconstructions require a popliteofibular ligament reconstruction through a tibial tunnel. Am J Sports Med 38:1674–1681PubMedCrossRef
18.
Zurück zum Zitat Miyasaka KC, Daniel DM, Stone ML, Hirshman P (1991) The incidence of knee ligament injuries in the general population. Am J Knee Surg 4:3–8 Miyasaka KC, Daniel DM, Stone ML, Hirshman P (1991) The incidence of knee ligament injuries in the general population. Am J Knee Surg 4:3–8
19.
Zurück zum Zitat Nau T, Chevalier Y, Hagemeister N, Duval N, deGuise JA (2005) 3D kinematic in vitro comparison of posterolateral corner reconstruction techniques in a combined injury model. Knee Surg Sports Traumatol Arthrosc 13:572–580PubMedCrossRef Nau T, Chevalier Y, Hagemeister N, Duval N, deGuise JA (2005) 3D kinematic in vitro comparison of posterolateral corner reconstruction techniques in a combined injury model. Knee Surg Sports Traumatol Arthrosc 13:572–580PubMedCrossRef
20.
Zurück zum Zitat Nau T, Chevalier Y, Hagemeister N, Deguise JA, Duval N (2005) Comparison of 2 surgical techniques of posterolateral corner reconstruction of the knee. Am J Sports Med 33:1838–1845PubMedCrossRef Nau T, Chevalier Y, Hagemeister N, Deguise JA, Duval N (2005) Comparison of 2 surgical techniques of posterolateral corner reconstruction of the knee. Am J Sports Med 33:1838–1845PubMedCrossRef
21.
Zurück zum Zitat Nyland J, Lachman N, Kocabey Y, Brosky J, Altun R, Caborn D (2005) Anatomy, function, and rehabilitation of the popliteus musculotendinous complex. J Orthop Sports Phys Ther 35:165–179PubMedCrossRef Nyland J, Lachman N, Kocabey Y, Brosky J, Altun R, Caborn D (2005) Anatomy, function, and rehabilitation of the popliteus musculotendinous complex. J Orthop Sports Phys Ther 35:165–179PubMedCrossRef
22.
Zurück zum Zitat O’Brien SJ, Warren RF, Pavlov H, Panariello R, Wickiewicz TL (1991) Reconstruction of the chronically insufficient anterior cruciate ligament with the central third of the patellar ligament. J Bone Joint Surg Am 73:278–286PubMed O’Brien SJ, Warren RF, Pavlov H, Panariello R, Wickiewicz TL (1991) Reconstruction of the chronically insufficient anterior cruciate ligament with the central third of the patellar ligament. J Bone Joint Surg Am 73:278–286PubMed
23.
Zurück zum Zitat Pasque C, Noyes FR, Gibbons M, Levy M, Grood E (2003) The role of the popliteofibular ligament and the tendon of popliteus in providing stability in the human knee. J Bone Joint Surg Br 85:292–298PubMedCrossRef Pasque C, Noyes FR, Gibbons M, Levy M, Grood E (2003) The role of the popliteofibular ligament and the tendon of popliteus in providing stability in the human knee. J Bone Joint Surg Br 85:292–298PubMedCrossRef
24.
Zurück zum Zitat Pearle AD, Solomon DJ, Wanich T, Moreau-Gaudry A, Granchi CC, Wickiewicz TL, Warren RF (2007) Reliability of navigated knee stability examination: a cadaveric evaluation. Am J Sports Med 35:1315–1320PubMedCrossRef Pearle AD, Solomon DJ, Wanich T, Moreau-Gaudry A, Granchi CC, Wickiewicz TL, Warren RF (2007) Reliability of navigated knee stability examination: a cadaveric evaluation. Am J Sports Med 35:1315–1320PubMedCrossRef
25.
Zurück zum Zitat Prado Reis F, Ferraz de Carvalho CADE (1973) Electromyographic study of the popliteus muscle. Electromyogr Clin Neurophysiol 13:445–455PubMed Prado Reis F, Ferraz de Carvalho CADE (1973) Electromyographic study of the popliteus muscle. Electromyogr Clin Neurophysiol 13:445–455PubMed
26.
Zurück zum Zitat Schinhan M, Bijak M, Unger E, Nau T (2011) Electromyographic study of the popliteus muscle in the dynamic stabilization of the posterolateral corner structures of the knee. Am J Sports Med 39:173–179PubMedCrossRef Schinhan M, Bijak M, Unger E, Nau T (2011) Electromyographic study of the popliteus muscle in the dynamic stabilization of the posterolateral corner structures of the knee. Am J Sports Med 39:173–179PubMedCrossRef
27.
Zurück zum Zitat Sekiya JK, Whiddon DR, Zehms CT, Miller MD (2008) A clinically relevant assessment of posterior cruciate ligament and posterolateral corner injuries. Evaluation of isolated and combined deficiency. J Bone Joint Surg Am 90:1621–1627PubMedCrossRef Sekiya JK, Whiddon DR, Zehms CT, Miller MD (2008) A clinically relevant assessment of posterior cruciate ligament and posterolateral corner injuries. Evaluation of isolated and combined deficiency. J Bone Joint Surg Am 90:1621–1627PubMedCrossRef
28.
Zurück zum Zitat Sigward SM, Markolf KL, Graves BR, Chacko JM, Jackson SR, McAllister DR (2007) Femoral fixation sites for optimum isometry of posterolateral reconstruction. J Bone Joint Surg Am 89:2359–2368PubMedCrossRef Sigward SM, Markolf KL, Graves BR, Chacko JM, Jackson SR, McAllister DR (2007) Femoral fixation sites for optimum isometry of posterolateral reconstruction. J Bone Joint Surg Am 89:2359–2368PubMedCrossRef
29.
Zurück zum Zitat Vincent JP, Magnussen RA, Gezmez F, Uguen A, Jacobi M, Weppe F, Al-Saati MF, Lustig S, Demey G, Servien E, Neyret P (2012) The anterolateral ligament of the human knee: an anatomic and histologic study. Knee Surg Sports Traumatol Arthrosc 20:147–152PubMedCrossRef Vincent JP, Magnussen RA, Gezmez F, Uguen A, Jacobi M, Weppe F, Al-Saati MF, Lustig S, Demey G, Servien E, Neyret P (2012) The anterolateral ligament of the human knee: an anatomic and histologic study. Knee Surg Sports Traumatol Arthrosc 20:147–152PubMedCrossRef
Metadaten
Titel
The arcuate ligament revisited: role of the posterolateral structures in providing static stability in the knee joint
verfasst von
M. Thaunat
C. Pioger
R. Chatellard
J. Conteduca
A. Khaleel
B. Sonnery-Cottet
Publikationsdatum
01.09.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Knee Surgery, Sports Traumatology, Arthroscopy / Ausgabe 9/2014
Print ISSN: 0942-2056
Elektronische ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-013-2643-4

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