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DOI: 10.1055/a-2779-0226
Transposition of the Semimembranosus as an Augmentation Technique for Anteromedial Rotatory Instability of the Knee: A Retrospective Case Series Study
Authors
Abstract
Anteromedial rotatory instability (AMRI) resulting from medial collateral ligament (MCL) injuries, often combined with anterior cruciate ligament (ACL) tears, poses a significant challenge in knee surgery. This study evaluates the use of a novel technique—semimembranosus (SM) tendon transposition—as an augmentation to ACL and superficial MCL (sMCL) reconstruction, reducing medial knee opening and AMRI. A case series of 15 patients with AMRI underwent ACL and sMCL reconstruction with SM tendon transposition between January 2017 and July 2021, with a minimum follow-up of 24 months. Inclusion criteria included age 18 to 50 years, AMRI diagnosed clinically, and a minimum 24-month follow-up. Exclusion criteria included high-grade osteoarthritis, knee dislocations, and revision surgeries. Outcomes were assessed using the Lysholm Knee Score (LKS) and stress radiographs, manually performed at 0 and 30 degrees of knee flexion, to measure medial compartment gapping preoperatively and at 12 and 24 months postoperatively. Significant improvements were observed in LKS, with mean scores increasing by 121% from 42.8 ± 5.9 preoperatively to 97 ± 2.8 at 12 months and by 132% to 99.2 ± 1.8 at 24 months (p < 0.001). Radiographic medial opening decreased by 81% from 5.46 ± 0.74 mm preoperatively to 1.05 ± 0.9 mm at 12 months and by 83% to 0.92 ± 0.92 mm at 24 months (p < 0.001). All patients (100%) exceeded the minimal clinically important difference for LKS, and no residual instability was observed at final follow-up. The complication rate was 13% (arthrofibrosis), within the expected range for knee reconstructions. SM tendon transposition effectively restored medial stability and improved functional outcomes in AMRI patients, without the need for additional grafts or tunnels, presenting a low complication rate.
Keywords
anterior cruciate ligament reconstruction - joint instability - Lysholm score - medial collateral ligamentPublication History
Received: 22 July 2024
Accepted: 23 December 2025
Article published online:
13 January 2026
© 2026. Thieme. All rights reserved.
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References
- 1 Engebretsen L, Lind M. Anteromedial rotatory laxity. Knee Surg Sports Traumatol Arthrosc 2015; 23 (10) 2797-2804
- 2 Robinson JR, Sanchez-Ballester J, Bull AM, Thomas RdeW, Amis AA. The posteromedial corner revisited. An anatomical description of the passive restraining structures of the medial aspect of the human knee. J Bone Joint Surg Br 2004; 86 (05) 674-681
- 3 Jacobson KE, Chi FS. Evaluation and treatment of medial collateral ligament and medial-sided injuries of the knee. Sports Med Arthrosc Rev 2006; 14 (02) 58-66
- 4 Funchal LFZ, Astur DC, Ortiz R, Cohen M. The presence of the arthroscopic “floating meniscus” sign as an indicator for surgical intervention in patients with combined anterior cruciate ligament and grade II medial collateral ligament injury. Arthroscopy 2019; 35 (03) 930-937
- 5 Ball S, Stephen JM, El-Daou H, Williams A, Amis AA. The medial ligaments and the ACL restrain anteromedial laxity of the knee. Knee Surg Sports Traumatol Arthrosc 2020; 28 (12) 3700-3708
- 6 Willinger L, Balendra G, Pai V. et al. High incidence of superficial and deep medial collateral ligament injuries in 'isolated' anterior cruciate ligament ruptures: a long overlooked injury. Knee Surg Sports Traumatol Arthrosc 2022; 30 (01) 167-175
- 7 Wierer G, Milinkovic D, Robinson JR. et al. The superficial medial collateral ligament is the major restraint to anteromedial instability of the knee. Knee Surg Sports Traumatol Arthrosc 2021; 29 (02) 405-416
- 8 Hughston JC, Andrews JR, Cross MJ, Moschi A. Classification of knee ligament instabilities. Part I. The medial compartment and cruciate ligaments. J Bone Joint Surg Am 1976; 58 (02) 159-172
- 9 Hughes JD, Rauer T, Gibbs CM, Musahl V. Diagnosis and treatment of rotatory knee instability. J Exp Orthop 2019; 6 (01) 48
- 10 Laurens M, Cavaignac E, Fayolle H. et al. The accuracy of MRI for the diagnosis of ramp lesions. Skeletal Radiol 2022; 51 (03) 525-533
- 11 Kittl C, Becker DK, Raschke MJ. et al. Dynamic restraints of the medial side of the knee: the semimembranosus corner revisited. Am J Sports Med 2019; 47 (04) 863-869
- 12 Svantesson E, Hamrin Senorski E, Alentorn-Geli E. et al. Increased risk of ACL revision with non-surgical treatment of a concomitant medial collateral ligament injury: a study on 19,457 patients from the Swedish National Knee Ligament Registry. Knee Surg Sports Traumatol Arthrosc 2019; 27 (08) 2450-2459
- 13 Ahn JH, Lee SH. Risk factors for knee instability after anterior cruciate ligament reconstruction. Knee Surg Sports Traumatol Arthrosc 2016; 24 (09) 2936-2942
- 14 Han S, Gold J, Sij E. et al. Poster 297: deep medial collateral ligament reconstruction of the knee restores rotational stability throughout full range of motion while contemporary MCL reconstruction only does in extension. Orthop J Sports Med 2023; 11 (7 Suppl 3): 2325967123S00272
- 15 Sims WF, Jacobson KE. The posteromedial corner of the knee: medial-sided injury patterns revisited. Am J Sports Med 2004; 32 (02) 337-345
- 16 Mueller W. The Knee: Form, Function, and Ligament Reconstruction. New York: Springer; 1982
- 17 Stannard JP, Black BS, Azbell C, Volgas DA. Posteromedial corner injury in knee dislocations. J Knee Surg 2012; 25 (05) 429-434
- 18 Hunter SC, Andrews JR, McLeod WD, McCluskey GM, Blackburn Jr TA. Surgical reconstruction of chronic anteromedial rotatory instability of knee. A review with computer analysis of 149 cases. Am J Sports Med 1979; 7 (03) 165-168
- 19 Beel W, Vivacqua T, Willing R, Getgood A. Double-bundle medial collateral ligament reconstruction improves anteromedial rotatory instability. Am J Sports Med 2024; 52 (08) 1970-1978
- 20 Helal A, Marie A, El-Forse ES. The “figure of four” reconstruction of the medial collateral ligaments in the setting of anteromedial rotatory knee instability using a single autograft. Arthrosc Tech 2022; 11 (07) e1239-e1245
- 21 Malinowski K, Hermanowicz K, Góralczyk A, LaPrade RF. Medial collateral ligament reconstruction with anteromedial reinforcement for medial and anteromedial rotatory instability of the knee. Arthrosc Tech 2019; 8 (08) e807-e814
- 22 Ramos LA, Ciancio BA, Barbosa MA, Miyashita GK, Yamashita JL. Semimembranosus tendon advancement for the anteromedial knee rotatory instability treatment. Arthrosc Tech 2021; 10 (12) e2789-e2795
- 23 Kellgren JH, Lawrence JS. Radiological assessment of osteo-arthrosis. Ann Rheum Dis 1957; 16 (04) 494-502
- 24 Ockuly AC, Imada AO, Richter DL, Treme GP, Wascher DC, Schenck Jr RC. “UNMKD Recon Group”. Initial evaluation and classification of knee dislocations. Sports Med Arthrosc Rev 2020; 28 (03) 87-93
- 25 Wijdicks CA, Griffith CJ, Johansen S, Engebretsen L, LaPrade RF. Injuries to the medial collateral ligament and associated medial structures of the knee. J Bone Joint Surg Am 2010; 92 (05) 1266-1280
- 26 Jacobsen K. Stress radiographical measurements of post-traumatic knee instability. A clinical study. Acta Orthop Scand 1977; 48 (03) 301-310
- 27 Laprade RF, Bernhardson AS, Griffith CJ, Macalena JA, Wijdicks CA. Correlation of valgus stress radiographs with medial knee ligament injuries: an in vitro biomechanical study. Am J Sports Med 2010; 38 (02) 330-338
- 28 Scott WN. Insall & Scott Surgery of the Knee. 6th ed.. Vol 1. Elsevier; 2018: 497
- 29 Peccin MS, Ciconelli R, Cohen M. Questionário específico para sintomas do joelho “Lysholm Knee Scoring Scale”—Tradução a validação para a língua portuguesa. Acta Ortop Bras 2006;14(5)
- 30 Lysholm J, Gillquist J. Evaluation of knee ligament surgery results with special emphasis on use of a scoring scale. Am J Sports Med 1982; 10 (03) 150-154
- 31 Briggs KK, Lysholm J, Tegner Y, Rodkey WG, Kocher MS, Steadman JR. The reliability, validity, and responsiveness of the Lysholm score and Tegner activity scale for anterior cruciate ligament injuries of the knee: 25 years later. Am J Sports Med 2009; 37 (05) 890-897
- 32 Harris JD, Brand JC, Cote MP, Faucett SC, Dhawan A. Research pearls: the significance of statistics and perils of pooling. part 1: clinical versus statistical significance. Arthroscopy 2017; 33 (06) 1102-1112
- 33 Laprade RF, Wijdicks CA. Surgical technique: development of an anatomic medial knee reconstruction. Clin Orthop Relat Res 2012; 470 (03) 806-814
- 34 Dong J, Wang XF, Men X. et al. Surgical treatment of acute grade III medial collateral ligament injury combined with anterior cruciate ligament injury: anatomic ligament repair versus triangular ligament reconstruction. Arthroscopy 2015; 31 (06) 1108-1116
- 35 Blackwood NO, Blitz JA, Vopat B, Ierulli VK, Mulcahey MK. Medial collateral ligament reconstruction with autograft versus allograft: a systematic review. Am J Sports Med 2024; 52 (13) 3419-3426
- 36 Zeng C, Gao SG, Li H. et al. Autograft versus allograft in anterior cruciate ligament reconstruction: a meta-analysis of randomized controlled trials and systematic review of overlapping systematic reviews. Arthroscopy 2016; 32 (01) 153-63.e18
- 37 Herbst E, Muhmann RJ, Raschke MJ. et al. The anterior fibers of the superficial MCL and the ACL restrain anteromedial rotatory instability. Am J Sports Med 2023; 51 (11) 2928-2935
- 38 Madonna V, Screpis D, Condello V. et al. A novel technique for combined medial collateral ligament and posterior oblique ligament reconstruction: technical note. Knee Surg Sports Traumatol Arthrosc 2015; 23 (10) 2814-2819
- 39 Miyaji N, Holthof SR, Ball SV, Williams A, Amis AA. Medial collateral ligament reconstruction for anteromedial instability of the knee: a biomechanical study in vitro. Am J Sports Med 2022; 50 (07) 1823-1831
- 40 Behrendt P, Herbst E, Robinson JR. et al. The control of anteromedial rotatory instability is improved with combined flat sMCL and anteromedial reconstruction. Am J Sports Med 2022; 50 (08) 2093-2101
- 41 Borden PS, Kantaras AT, Caborn DN. Medial collateral ligament reconstruction with allograft using a double-bundle technique. Arthroscopy 2002; 18 (04) E19
- 42 Yoshiya S, Kuroda R, Mizuno K, Yamamoto T, Kurosaka M. Medial collateral ligament reconstruction using autogenous hamstring tendons: technique and results in initial cases. Am J Sports Med 2005; 33 (09) 1380-1385
- 43 Lind M, Jakobsen BW, Lund B, Hansen MS, Abdallah O, Christiansen SE. Anatomical reconstruction of the medial collateral ligament and posteromedial corner of the knee in patients with chronic medial collateral ligament instability. Am J Sports Med 2009; 37 (06) 1116-1122
- 44 Shatrov J, Bonacic Bartolin P, Holthof SR, Ball S, Williams A, Amis AA. A comparative biomechanical study of alternative medial collateral ligament reconstruction techniques. Am J Sports Med 2024; 52 (06) 1505-1513
- 45 Moatshe G, Slette EL, Engebretsen L, LaPrade RF. Intertunnel relationships in the tibia during reconstruction of multiple knee ligaments: how to avoid tunnel convergence. Am J Sports Med 2016; 44 (11) 2864-2869
- 46 Hirschmann MT, Müller W. Complex function of the knee joint: the current understanding of the knee. Knee Surg Sports Traumatol Arthrosc 2015; 23 (10) 2780-2788
- 47 Rushdi I, Sharifudin S, Shukur A. Arthrofibrosis following anterior cruciate ligament reconstruction. Malays Orthop J 2019; 13 (03) 34-38
- 48 Coobs BR, Wijdicks CA, Armitage BM. et al. An in vitro analysis of an anatomical medial knee reconstruction. Am J Sports Med 2010; 38 (02) 339-347
- 49 DeLong JM, Waterman BR. Surgical techniques for the reconstruction of medial collateral ligament and posteromedial corner injuries of the knee: a systematic review. Arthroscopy 2015; 31 (11) 2258-72.e1
- 50 Chapman G, Vij N, LaPrade R, Amin N. Medial-sided ligamentous injuries of the athlete's knee: evaluation and management. Cureus 2023; 15 (03) e36360
- 51 Westermann RW, Spindler KP, Huston LJ, Wolf BR. MOON Knee Group. Outcomes of grade III medial collateral ligament injuries treated concurrently with anterior cruciate ligament reconstruction: a multicenter study. Arthroscopy 2019; 35 (05) 1466-1472
- 52 Lysholm J, Gillquist J. Evaluation of knee ligament surgery results with special emphasis on use of a scoring scale. Am J Sports Med 1982; 10 (03) 150-154
- 53 Kaya D, Citaker S, Kerimoglu U. et al. Women with patellofemoral pain syndrome have quadriceps femoris volume and strength deficiency. Knee Surg Sports Traumatol Arthrosc 2011; 19 (02) 242-247
- 54 Petersen W, Taheri P, Forkel P, Zantop T. Return to play following ACL reconstruction: a systematic review about strength deficits. Arch Orthop Trauma Surg 2014; 134 (10) 1417-1428
- 55 Grindem H, Snyder-Mackler L, Moksnes H, Engebretsen L, Risberg MA. Simple decision rules can reduce reinjury risk by 84% after ACL reconstruction: the Delaware-Oslo ACL cohort study. Br J Sports Med 2016; 50 (13) 804-808