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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 4/2020

01-04-2020 | KNEE

Osseous valgus alignment and posteromedial ligament complex deficiency lead to increased ACL graft forces

Authors: Julian Mehl, Alexander Otto, Cameron Kia, Matthew Murphy, E. Obopilwe, Florian B. Imhoff, Matthias J. Feucht, Andreas B. Imhoff, Robert A. Arciero, Knut Beitzel

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 4/2020

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Abstract

Purpose

To biomechanically investigate the influence of osseous valgus alignment, with and without deficiency of the posteromedial ligament complex (PMC), on ACL-graft forces under axial load.

Methods

ACL reconstruction was performed on ten cadaveric knee joints. A lateral distal femur osteotomy was then done to adjust for three different alignment conditions according to the position, where the axial weight bearing line (WBL) dissected the tibial plateau (% from medial to lateral): 50%, 85% and 115%. Each alignment was tested with the PMC intact, deficient and reconstructed. Axial loads of 400 N were applied in 15° of knee flexion and changes of ACL-graft forces and dynamic valgus angle (DVA) were recorded.

Results

In the PMC intact state, lateralization of the WBL to 85% and to 115% led to significantly increased ACL graft forces (85%: p = 0.010; 115%: p < 0.001) and DVAs (85%: p = 0.027; 115%: p = 0.027). Dissection of the PMC led to a significant increase of ACL graft forces and DVAs at 85% and 115% valgus alignment (p < 0.001) only.
In comparison to valgus aligned knees with additional PMC deficiency, ligament reconstruction alone was able to significantly decrease ACL graft forces (p < 0.001) and DVAs (p < 0.001). However, alignment correction alone was significantly more effective in reducing ACL graft forces (p < 0.001) and DVAs (p = 0.010).

Conclusion

Osseous valgus alignment led to significantly increased forces on ACL grafts under axial joint compression, which was even further enhanced, when the PMC was deficient. In the valgus aligned and PMC deficient knee, correction to a straight leg axis was significantly more effective in decreasing forces on the ACL graft than reconstruction of the PMC. In patients with valgus alignment and combined injuries of the ACL and PMC, a correction osteotomy to a straight leg axis as well as reconstruction of the PMC should be considered to protect the reconstructed ACL.
Literature
1.
go back to reference Battaglia MJ 2nd, Lenhoff MW, Ehteshami JR, Lyman S, Provencher MT, Wickiewicz TL et al (2009) Medial collateral ligament injuries and subsequent load on the anterior cruciate ligament: a biomechanical evaluation in a cadaveric model. Am J Sports Med 37:305–311CrossRef Battaglia MJ 2nd, Lenhoff MW, Ehteshami JR, Lyman S, Provencher MT, Wickiewicz TL et al (2009) Medial collateral ligament injuries and subsequent load on the anterior cruciate ligament: a biomechanical evaluation in a cadaveric model. Am J Sports Med 37:305–311CrossRef
2.
go back to reference Coobs BR, Wijdicks CA, Armitage BM, Spiridonov SI, Westerhaus BD, Johansen S et al (2010) An in vitro analysis of an anatomical medial knee reconstruction. Am J Sports Med 38:339–347CrossRef Coobs BR, Wijdicks CA, Armitage BM, Spiridonov SI, Westerhaus BD, Johansen S et al (2010) An in vitro analysis of an anatomical medial knee reconstruction. Am J Sports Med 38:339–347CrossRef
3.
go back to reference Ellsasser JC, Reynolds FC, Omohundro JR (1974) The non-operative treatment of collateral ligament injuries of the knee in professional football players. An analysis of seventy-four injuries treated non-operatively and twenty-four injuries treated surgically. J Bone Jt Surg Am 56:1185–1190CrossRef Ellsasser JC, Reynolds FC, Omohundro JR (1974) The non-operative treatment of collateral ligament injuries of the knee in professional football players. An analysis of seventy-four injuries treated non-operatively and twenty-four injuries treated surgically. J Bone Jt Surg Am 56:1185–1190CrossRef
4.
go back to reference Feucht MJ, Mehl J, Forkel P, Imhoff AB, Hinterwimmer S (2017) Distal femoral osteotomy using a lateral opening wedge technique. Oper Orthop Traumatol 29:320–329CrossRef Feucht MJ, Mehl J, Forkel P, Imhoff AB, Hinterwimmer S (2017) Distal femoral osteotomy using a lateral opening wedge technique. Oper Orthop Traumatol 29:320–329CrossRef
5.
go back to reference Fritsch B, Figueroa F, Semay B (2017) Graft preparation technique to optimize hamstring graft diameter for anterior cruciate ligament reconstruction. Arthrosc Tech 6:e2169–e2175CrossRef Fritsch B, Figueroa F, Semay B (2017) Graft preparation technique to optimize hamstring graft diameter for anterior cruciate ligament reconstruction. Arthrosc Tech 6:e2169–e2175CrossRef
6.
go back to reference Gilmer BB, Crall T, DeLong J, Kubo T, Mackay G, Jani SS (2016) Biomechanical analysis of internal bracing for treatment of medial knee injuries. Orthopedics 39:e532–537CrossRef Gilmer BB, Crall T, DeLong J, Kubo T, Mackay G, Jani SS (2016) Biomechanical analysis of internal bracing for treatment of medial knee injuries. Orthopedics 39:e532–537CrossRef
7.
go back to reference Grassi A, Ardern CL, Marcheggiani Muccioli GM, Neri MP, Marcacci M, Zaffagnini S (2016) Does revision ACL reconstruction measure up to primary surgery? A meta-analysis comparing patient-reported and clinician-reported outcomes, and radiographic results. Br J Sports Med 50:716–724CrossRef Grassi A, Ardern CL, Marcheggiani Muccioli GM, Neri MP, Marcacci M, Zaffagnini S (2016) Does revision ACL reconstruction measure up to primary surgery? A meta-analysis comparing patient-reported and clinician-reported outcomes, and radiographic results. Br J Sports Med 50:716–724CrossRef
8.
go back to reference Griffith CJ, Wijdicks CA, LaPrade RF, Armitage BM, Johansen S, Engebretsen L (2009) Force measurements on the posterior oblique ligament and superficial medial collateral ligament proximal and distal divisions to applied loads. Am J Sports Med 37:140–148CrossRef Griffith CJ, Wijdicks CA, LaPrade RF, Armitage BM, Johansen S, Engebretsen L (2009) Force measurements on the posterior oblique ligament and superficial medial collateral ligament proximal and distal divisions to applied loads. Am J Sports Med 37:140–148CrossRef
9.
go back to reference Hamner DL, Brown CH Jr, Steiner ME, Hecker AT, Hayes WC (1999) Hamstring tendon grafts for reconstruction of the anterior cruciate ligament: biomechanical evaluation of the use of multiple strands and tensioning techniques. J Bone Jt Surg Am 81:549–557CrossRef Hamner DL, Brown CH Jr, Steiner ME, Hecker AT, Hayes WC (1999) Hamstring tendon grafts for reconstruction of the anterior cruciate ligament: biomechanical evaluation of the use of multiple strands and tensioning techniques. J Bone Jt Surg Am 81:549–557CrossRef
10.
go back to reference Hetsroni I, Lyman S, Pearle AD, Marx RG (2014) The effect of lateral opening wedge distal femoral osteotomy on medial knee opening: clinical and biomechanical factors. Knee Surg Sports Traumatol Arthrosc 22:1659–1665CrossRef Hetsroni I, Lyman S, Pearle AD, Marx RG (2014) The effect of lateral opening wedge distal femoral osteotomy on medial knee opening: clinical and biomechanical factors. Knee Surg Sports Traumatol Arthrosc 22:1659–1665CrossRef
11.
go back to reference Hewett TE, Ford KR, Hoogenboom BJ, Myer GD (2010) Understanding and preventing acl injuries: current biomechanical and epidemiologic considerations—update 2010. N Am J Sports Phys Ther 5:234–251PubMedPubMedCentral Hewett TE, Ford KR, Hoogenboom BJ, Myer GD (2010) Understanding and preventing acl injuries: current biomechanical and epidemiologic considerations—update 2010. N Am J Sports Phys Ther 5:234–251PubMedPubMedCentral
12.
go back to reference Hinckel BB, Demange MK, Gobbi RG, Pecora JR, Camanho GL (2016) The effect of mechanical varus on anterior cruciate ligament and lateral collateral ligament stress: finite element analyses. Orthopedics 39:e729–736CrossRef Hinckel BB, Demange MK, Gobbi RG, Pecora JR, Camanho GL (2016) The effect of mechanical varus on anterior cruciate ligament and lateral collateral ligament stress: finite element analyses. Orthopedics 39:e729–736CrossRef
13.
go back to reference Imhoff FB, Mehl J, Comer BJ, Obopilwe E, Cote MP, Feucht MJ et al (2019) Slope-reducing tibial osteotomy decreases ACL-graft forces and anterior tibial translation under axial load. Knee Surg Sports Traumatol Arthrosc 28:019–05360 Imhoff FB, Mehl J, Comer BJ, Obopilwe E, Cote MP, Feucht MJ et al (2019) Slope-reducing tibial osteotomy decreases ACL-graft forces and anterior tibial translation under axial load. Knee Surg Sports Traumatol Arthrosc 28:019–05360
14.
go back to reference Indelicato PA (1983) Non-operative treatment of complete tears of the medial collateral ligament of the knee. J Bone Jt Surg Am 65:323–329CrossRef Indelicato PA (1983) Non-operative treatment of complete tears of the medial collateral ligament of the knee. J Bone Jt Surg Am 65:323–329CrossRef
15.
go back to reference Kvist J, Kartus J, Karlsson J, Forssblad M (2014) Results from the Swedish national anterior cruciate ligament register. Arthroscopy 30:803–810CrossRef Kvist J, Kartus J, Karlsson J, Forssblad M (2014) Results from the Swedish national anterior cruciate ligament register. Arthroscopy 30:803–810CrossRef
16.
go back to reference LaPrade RF, Engebretsen AH, Ly TV, Johansen S, Wentorf FA, Engebretsen L (2007) The anatomy of the medial part of the knee. J Bone Jt Surg Am 89:2000–2010CrossRef LaPrade RF, Engebretsen AH, Ly TV, Johansen S, Wentorf FA, Engebretsen L (2007) The anatomy of the medial part of the knee. J Bone Jt Surg Am 89:2000–2010CrossRef
17.
go back to reference Mancini EJ, Kohen R, Esquivel AO, Cracchiolo AM, Lemos SE (2017) Comparison of ACL strain in the MCL-Deficient and MCL-reconstructed knee during simulated landing in a cadaveric model. Am J Sports Med 45:1090–1094CrossRef Mancini EJ, Kohen R, Esquivel AO, Cracchiolo AM, Lemos SE (2017) Comparison of ACL strain in the MCL-Deficient and MCL-reconstructed knee during simulated landing in a cadaveric model. Am J Sports Med 45:1090–1094CrossRef
18.
go back to reference Oh YK, Kreinbrink JL, Wojtys EM, Ashton-Miller JA (2012) Effect of axial tibial torque direction on ACL relative strain and strain rate in an in vitro simulated pivot landing. J Orthop Res 30:528–534CrossRef Oh YK, Kreinbrink JL, Wojtys EM, Ashton-Miller JA (2012) Effect of axial tibial torque direction on ACL relative strain and strain rate in an in vitro simulated pivot landing. J Orthop Res 30:528–534CrossRef
19.
go back to reference Oh YK, Lipps DB, Ashton-Miller JA, Wojtys EM (2012) What strains the anterior cruciate ligament during a pivot landing? Am J Sports Med 40:574–583CrossRef Oh YK, Lipps DB, Ashton-Miller JA, Wojtys EM (2012) What strains the anterior cruciate ligament during a pivot landing? Am J Sports Med 40:574–583CrossRef
20.
go back to reference Paley D (2002) Normal lower limb alignment and joint orientation. In: Principles of deformity correction, 1st edn. Springer Science and Business Media, Berlin, pp 1–18 Paley D (2002) Normal lower limb alignment and joint orientation. In: Principles of deformity correction, 1st edn. Springer Science and Business Media, Berlin, pp 1–18
21.
go back to reference Paley D, Herzenberg JE, Tetsworth K, McKie J, Bhave A (1994) Deformity planning for frontal and sagittal plane corrective osteotomies. Orthop Clin N Am 25:425–465 Paley D, Herzenberg JE, Tetsworth K, McKie J, Bhave A (1994) Deformity planning for frontal and sagittal plane corrective osteotomies. Orthop Clin N Am 25:425–465
22.
go back to reference Phisitkul P, James SL, Wolf BR, Amendola A (2006) MCL injuries of the knee: current concepts review. Iowa Orthop J 26:77–90PubMedPubMedCentral Phisitkul P, James SL, Wolf BR, Amendola A (2006) MCL injuries of the knee: current concepts review. Iowa Orthop J 26:77–90PubMedPubMedCentral
23.
go back to reference Reider B, Sathy MR, Talkington J, Blyznak N, Kollias S (1994) Treatment of isolated medial collateral ligament injuries in athletes with early functional rehabilitation. A five-year follow-up study. Am J Sports Med 22:470–477CrossRef Reider B, Sathy MR, Talkington J, Blyznak N, Kollias S (1994) Treatment of isolated medial collateral ligament injuries in athletes with early functional rehabilitation. A five-year follow-up study. Am J Sports Med 22:470–477CrossRef
24.
go back to reference Renstrom P, Ljungqvist A, Arendt E, Beynnon B, Fukubayashi T, Garrett W et al (2008) Non-contact ACL injuries in female athletes: an International Olympic Committee current concepts statement. Br J Sports Med 42:394–412CrossRef Renstrom P, Ljungqvist A, Arendt E, Beynnon B, Fukubayashi T, Garrett W et al (2008) Non-contact ACL injuries in female athletes: an International Olympic Committee current concepts statement. Br J Sports Med 42:394–412CrossRef
25.
go back to reference Robinson JR, Bull AM, Amis AA (2005) Structural properties of the medial collateral ligament complex of the human knee. J Biomech 38:1067–1074CrossRef Robinson JR, Bull AM, Amis AA (2005) Structural properties of the medial collateral ligament complex of the human knee. J Biomech 38:1067–1074CrossRef
26.
go back to reference Robinson JR, Bull AM, Thomas RR, Amis AA (2006) The role of the medial collateral ligament and posteromedial capsule in controlling knee laxity. Am J Sports Med 34:1815–1823CrossRef Robinson JR, Bull AM, Thomas RR, Amis AA (2006) The role of the medial collateral ligament and posteromedial capsule in controlling knee laxity. Am J Sports Med 34:1815–1823CrossRef
27.
go back to reference Sanders TL, Pareek A, Hewett TE, Levy BA, Dahm DL, Stuart MJ et al (2017) Long-term rate of graft failure after ACL reconstruction: a geographic population cohort analysis. Knee Surg Sports Traumatol Arthrosc. 25:222–228CrossRef Sanders TL, Pareek A, Hewett TE, Levy BA, Dahm DL, Stuart MJ et al (2017) Long-term rate of graft failure after ACL reconstruction: a geographic population cohort analysis. Knee Surg Sports Traumatol Arthrosc. 25:222–228CrossRef
28.
go back to reference Stannard JP, Black BS, Azbell C, Volgas DA (2012) Posteromedial corner injury in knee dislocations. J Knee Surg. 25:429–434CrossRef Stannard JP, Black BS, Azbell C, Volgas DA (2012) Posteromedial corner injury in knee dislocations. J Knee Surg. 25:429–434CrossRef
29.
go back to reference van de Pol GJ, Arnold MP, Verdonschot N, van Kampen A (2009) Varus alignment leads to increased forces in the anterior cruciate ligament. Am J Sports Med. 37:481–487CrossRef van de Pol GJ, Arnold MP, Verdonschot N, van Kampen A (2009) Varus alignment leads to increased forces in the anterior cruciate ligament. Am J Sports Med. 37:481–487CrossRef
30.
go back to reference Warren LA, Marshall JL, Girgis F (1974) The prime static stabilizer of the medical side of the knee. J Bone Jt Surg Am 56:665–674CrossRef Warren LA, Marshall JL, Girgis F (1974) The prime static stabilizer of the medical side of the knee. J Bone Jt Surg Am 56:665–674CrossRef
31.
go back to reference Wijdicks CA, Griffith CJ, LaPrade RF, Johansen S, Sunderland A, Arendt EA et al (2009) Radiographic identification of the primary medial knee structures. J Bone Jt Surg Am 91:521–529CrossRef Wijdicks CA, Griffith CJ, LaPrade RF, Johansen S, Sunderland A, Arendt EA et al (2009) Radiographic identification of the primary medial knee structures. J Bone Jt Surg Am 91:521–529CrossRef
32.
go back to reference Williams RJ 3rd, Hyman J, Petrigliano F, Rozental T, Wickiewicz TL (2005) Anterior cruciate ligament reconstruction with a four-strand hamstring tendon autograft. Surgical technique. J Bone Jt Surg Am 87(Suppl 1):51–66CrossRef Williams RJ 3rd, Hyman J, Petrigliano F, Rozental T, Wickiewicz TL (2005) Anterior cruciate ligament reconstruction with a four-strand hamstring tendon autograft. Surgical technique. J Bone Jt Surg Am 87(Suppl 1):51–66CrossRef
33.
go back to reference Wright RW, Gill CS, Chen L, Brophy RH, Matava MJ, Smith MV et al (2012) Outcome of revision anterior cruciate ligament reconstruction: a systematic review. J Bone Jt Surg Am 94:531–536CrossRef Wright RW, Gill CS, Chen L, Brophy RH, Matava MJ, Smith MV et al (2012) Outcome of revision anterior cruciate ligament reconstruction: a systematic review. J Bone Jt Surg Am 94:531–536CrossRef
Metadata
Title
Osseous valgus alignment and posteromedial ligament complex deficiency lead to increased ACL graft forces
Authors
Julian Mehl
Alexander Otto
Cameron Kia
Matthew Murphy
E. Obopilwe
Florian B. Imhoff
Matthias J. Feucht
Andreas B. Imhoff
Robert A. Arciero
Knut Beitzel
Publication date
01-04-2020
Publisher
Springer Berlin Heidelberg
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 4/2020
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-019-05770-2

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