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Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy 10/2018

03.02.2018 | Knee

Dynamic augmentation restores anterior tibial translation in ACL suture repair: a biomechanical comparison of non-, static and dynamic augmentation techniques

verfasst von: Roy A. G. Hoogeslag, Reinoud W. Brouwer, Rianne Huis in ‘t Veld, Joanna M. Stephen, Andrew A. Amis

Erschienen in: Knee Surgery, Sports Traumatology, Arthroscopy | Ausgabe 10/2018

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Abstract

Purpose

There is a lack of objective evidence investigating how previous non-augmented ACL suture repair techniques and contemporary augmentation techniques in ACL suture repair restrain anterior tibial translation (ATT) across the arc of flexion, and after cyclic loading of the knee. The purpose of this work was to test the null hypotheses that there would be no statistically significant difference in ATT after non-, static- and dynamic-augmented ACL suture repair, and they will not restore ATT to normal values across the arc of flexion of the knee after cyclic loading.

Methods

Eleven human cadaveric knees were mounted in a test rig, and knee kinematics from 0° to 90° of flexion were recorded by use of an optical tracking system. Measurements were recorded without load and with 89-N tibial anterior force. The knees were tested in the following states: ACL-intact, ACL-deficient, non-augmented suture repair, static tape augmentation and dynamic augmentation after 10 and 300 loading cycles.

Results

Only static tape augmentation and dynamic augmentation restored ATT to values similar to the ACL-intact state directly postoperation, and maintained this after cyclic loading. However, contrary to dynamic augmentation, the ATT after static tape augmentation failed to remain statistically less than for the ACL-deficient state after cyclic loading. Moreover, after cyclic loading, ATT was significantly less with dynamic augmentation when compared to static tape augmentation.

Conclusion

In contrast to non-augmented ACL suture repair and static tape augmentation, only dynamic augmentation resulted in restoration of ATT values similar to the ACL-intact knee and decreased ATT values when compared to the ACL-deficient knee immediately post-operation and also after cyclic loading, across the arc of flexion, thus allowing the null hypotheses to be rejected. This may assist healing of the ruptured ACL. Therefore, this study would support further clinical evaluation of dynamic augmentation of ACL repair.
Literatur
2.
Zurück zum Zitat Buchler L, Regli D, Evangelopoulos DS, Bieri K, Ahmad SS, Krismer A et al (2016) Functional recovery following primary ACL repair with dynamic intraligamentary stabilization. Knee 23:549–553CrossRef Buchler L, Regli D, Evangelopoulos DS, Bieri K, Ahmad SS, Krismer A et al (2016) Functional recovery following primary ACL repair with dynamic intraligamentary stabilization. Knee 23:549–553CrossRef
3.
Zurück zum Zitat Cuomo P, Rama KR, Bull AM, Amis AA (2007) The effects of different tensioning strategies on knee laxity and graft tension after double-bundle anterior cruciate ligament reconstruction. Am J Sports Med 35:2083–2090CrossRef Cuomo P, Rama KR, Bull AM, Amis AA (2007) The effects of different tensioning strategies on knee laxity and graft tension after double-bundle anterior cruciate ligament reconstruction. Am J Sports Med 35:2083–2090CrossRef
4.
Zurück zum Zitat Eggli S, Roder C, Perler G, Henle P (2016) Five year results of the first ten ACL patients treated with dynamic intraligamentary stabilisation. BMC Musculoskelet Disord 17:105CrossRef Eggli S, Roder C, Perler G, Henle P (2016) Five year results of the first ten ACL patients treated with dynamic intraligamentary stabilisation. BMC Musculoskelet Disord 17:105CrossRef
5.
Zurück zum Zitat Engebretsen L, Lew WD, Lewis JL, Hunter RE (1989) Knee mechanics after repair of the anterior cruciate ligament. A cadaver study of ligament augmentation. Acta Orthop Scand 60:703–709CrossRef Engebretsen L, Lew WD, Lewis JL, Hunter RE (1989) Knee mechanics after repair of the anterior cruciate ligament. A cadaver study of ligament augmentation. Acta Orthop Scand 60:703–709CrossRef
7.
Zurück zum Zitat Faul F, Erdfelder E, Lang AG, Buchner A (2007) G*Power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Methods 39:175–191CrossRef Faul F, Erdfelder E, Lang AG, Buchner A (2007) G*Power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Methods 39:175–191CrossRef
8.
Zurück zum Zitat Fisher MB, Jung HJ, McMahon PJ, Woo SL (2010) Evaluation of bone tunnel placement for suture augmentation of an injured anterior cruciate ligament: effects on joint stability in a goat model. J Orthop Res 28:1373–1379CrossRef Fisher MB, Jung HJ, McMahon PJ, Woo SL (2010) Evaluation of bone tunnel placement for suture augmentation of an injured anterior cruciate ligament: effects on joint stability in a goat model. J Orthop Res 28:1373–1379CrossRef
9.
Zurück zum Zitat Fisher MB, Jung HJ, McMahon PJ, Woo SL (2011) Suture augmentation following ACL injury to restore the function of the ACL, MCL, and medial meniscus in the goat stifle joint. J Biomech 44:1530–1535CrossRef Fisher MB, Jung HJ, McMahon PJ, Woo SL (2011) Suture augmentation following ACL injury to restore the function of the ACL, MCL, and medial meniscus in the goat stifle joint. J Biomech 44:1530–1535CrossRef
10.
Zurück zum Zitat Fleming BC, Carey JL, Spindler KP, Murray MM (2008) Can suture repair of ACL transection restore normal anteroposterior laxity of the knee? An ex vivo study. J Orthop Res 26:1500–1505CrossRef Fleming BC, Carey JL, Spindler KP, Murray MM (2008) Can suture repair of ACL transection restore normal anteroposterior laxity of the knee? An ex vivo study. J Orthop Res 26:1500–1505CrossRef
11.
Zurück zum Zitat Friederich NF, Muller W, O’Brien WR (1992) [Clinical application of biomechanic and functional anatomical findings of the knee joint]. Orthopade 21:41–50PubMed Friederich NF, Muller W, O’Brien WR (1992) [Clinical application of biomechanic and functional anatomical findings of the knee joint]. Orthopade 21:41–50PubMed
12.
Zurück zum Zitat Heitmann M, Dratzidis A, Jagodzinski M, Wohlmuth P, Hurschler C, Puschel K et al (2014) Ligament bracing-augmented cruciate ligament sutures: biomechanical studies of a new treatment concept. Unfallchirurg 117:650–657CrossRef Heitmann M, Dratzidis A, Jagodzinski M, Wohlmuth P, Hurschler C, Puschel K et al (2014) Ligament bracing-augmented cruciate ligament sutures: biomechanical studies of a new treatment concept. Unfallchirurg 117:650–657CrossRef
13.
Zurück zum Zitat Henle P, Roder C, Perler G, Heitkemper S, Eggli S (2015) Dynamic Intraligamentary Stabilization (DIS) for treatment of acute anterior cruciate ligament ruptures: case series experience of the first three years. BMC Musculoskelet Disord 16:27CrossRef Henle P, Roder C, Perler G, Heitkemper S, Eggli S (2015) Dynamic Intraligamentary Stabilization (DIS) for treatment of acute anterior cruciate ligament ruptures: case series experience of the first three years. BMC Musculoskelet Disord 16:27CrossRef
14.
Zurück zum Zitat Inderhaug E, Stephen JM, Williams A, Amis AA (2017) Biomechanical comparison of anterolateral procedures combined with anterior cruciate ligament reconstruction. Am J Sports Med 45:347–354CrossRef Inderhaug E, Stephen JM, Williams A, Amis AA (2017) Biomechanical comparison of anterolateral procedures combined with anterior cruciate ligament reconstruction. Am J Sports Med 45:347–354CrossRef
15.
Zurück zum Zitat Khadem R, Yeh CC, Sadeghi-Tehrani M, Bax MR, Johnson JA, Welch JN et al (2000) Comparative tracking error analysis of five different optical tracking systems. Comput Aid Surg 5:98–107CrossRef Khadem R, Yeh CC, Sadeghi-Tehrani M, Bax MR, Johnson JA, Welch JN et al (2000) Comparative tracking error analysis of five different optical tracking systems. Comput Aid Surg 5:98–107CrossRef
16.
Zurück zum Zitat Kiapour AM, Murray MM (2014) Basic science of anterior cruciate ligament injury and repair. Bone Joint Res 3:20–31CrossRef Kiapour AM, Murray MM (2014) Basic science of anterior cruciate ligament injury and repair. Bone Joint Res 3:20–31CrossRef
17.
Zurück zum Zitat Kohl S, Evangelopoulos DS, Ahmad SS, Kohlhof H, Herrmann G, Bonel H et al (2014) A novel technique, dynamic intraligamentary stabilization creates optimal conditions for primary ACL healing: a preliminary biomechanical study. Knee 21:477–480CrossRef Kohl S, Evangelopoulos DS, Ahmad SS, Kohlhof H, Herrmann G, Bonel H et al (2014) A novel technique, dynamic intraligamentary stabilization creates optimal conditions for primary ACL healing: a preliminary biomechanical study. Knee 21:477–480CrossRef
18.
Zurück zum Zitat Kohl S, Evangelopoulos DS, Kohlhof H, Hartel M, Bonel H, Henle P et al (2013) Anterior crucial ligament rupture: self-healing through dynamic intraligamentary stabilization technique. Knee Surg Sports Traumatol Arthrosc 21:599–605CrossRef Kohl S, Evangelopoulos DS, Kohlhof H, Hartel M, Bonel H, Henle P et al (2013) Anterior crucial ligament rupture: self-healing through dynamic intraligamentary stabilization technique. Knee Surg Sports Traumatol Arthrosc 21:599–605CrossRef
19.
Zurück zum Zitat Kohl S, Evangelopoulos DS, Schar MO, Bieri K, Muller T, Ahmad SS (2016) Dynamic intraligamentary stabilisation: initial experience with treatment of acute ACL ruptures. Bone Joint J 98-B:793–798CrossRef Kohl S, Evangelopoulos DS, Schar MO, Bieri K, Muller T, Ahmad SS (2016) Dynamic intraligamentary stabilisation: initial experience with treatment of acute ACL ruptures. Bone Joint J 98-B:793–798CrossRef
20.
Zurück zum Zitat Kohn D, Busche T, Carls J (1998) Drill hole position in endoscopic anterior cruciate ligament reconstruction. Results of an advanced arthroscopy course. Knee Surg Sports Traumatol Arthrosc 6(Suppl 1):S13–15 Kohn D, Busche T, Carls J (1998) Drill hole position in endoscopic anterior cruciate ligament reconstruction. Results of an advanced arthroscopy course. Knee Surg Sports Traumatol Arthrosc 6(Suppl 1):S13–15
21.
Zurück zum Zitat Kondo E, Yasuda K, Azuma H, Tanabe Y, Yagi T (2008) Prospective clinical comparisons of anatomic double-bundle versus single-bundle anterior cruciate ligament reconstruction procedures in 328 consecutive patients. Am J Sports Med 36:1675–1687CrossRef Kondo E, Yasuda K, Azuma H, Tanabe Y, Yagi T (2008) Prospective clinical comparisons of anatomic double-bundle versus single-bundle anterior cruciate ligament reconstruction procedures in 328 consecutive patients. Am J Sports Med 36:1675–1687CrossRef
22.
Zurück zum Zitat Kosters C, Herbort M, Schliemann B, Raschke MJ, Lenschow S (2015) Dynamic intraligamentary stabilization of the anterior cruciate ligament. Operative technique and short-term clinical results. Unfallchirurg 118:364–371CrossRef Kosters C, Herbort M, Schliemann B, Raschke MJ, Lenschow S (2015) Dynamic intraligamentary stabilization of the anterior cruciate ligament. Operative technique and short-term clinical results. Unfallchirurg 118:364–371CrossRef
23.
Zurück zum Zitat Krismer AM, Gousopoulos L, Kohl S, Ateschrang A, Kohlhof H, Ahmad SS (2017) Factors influencing the success of anterior cruciate ligament repair with dynamic intraligamentary stabilisation. Knee Surg Sports Traumatol Arthrosc 25:3923–3928CrossRef Krismer AM, Gousopoulos L, Kohl S, Ateschrang A, Kohlhof H, Ahmad SS (2017) Factors influencing the success of anterior cruciate ligament repair with dynamic intraligamentary stabilisation. Knee Surg Sports Traumatol Arthrosc 25:3923–3928CrossRef
24.
Zurück zum Zitat Lewis JL, Lew WD, Schmidt J (1988) Description and error evaluation of an in vitro knee joint testing system. J Biomech Eng 110:238–248CrossRef Lewis JL, Lew WD, Schmidt J (1988) Description and error evaluation of an in vitro knee joint testing system. J Biomech Eng 110:238–248CrossRef
25.
Zurück zum Zitat Mackay GM, Blyth MJ, Anthony I, Hopper GP, Ribbans WJ (2015) A review of ligament augmentation with the InternalBrace: the surgical principle is described for the lateral ankle ligament and ACL repair in particular, and a comprehensive review of other surgical applications and techniques is presented. Surg Technol Int 26:239–255PubMed Mackay GM, Blyth MJ, Anthony I, Hopper GP, Ribbans WJ (2015) A review of ligament augmentation with the InternalBrace: the surgical principle is described for the lateral ankle ligament and ACL repair in particular, and a comprehensive review of other surgical applications and techniques is presented. Surg Technol Int 26:239–255PubMed
26.
Zurück zum Zitat Marshall JL, Rubin RM (1977) Knee ligament injuries—a diagnostic and therapeutic approach. Orthop Clin North Am 8:641–668PubMed Marshall JL, Rubin RM (1977) Knee ligament injuries—a diagnostic and therapeutic approach. Orthop Clin North Am 8:641–668PubMed
27.
Zurück zum Zitat Marshall JL, Warren RF, Wickiewicz TL, Reider B (1979) The anterior cruciate ligament: a technique of repair and reconstruction. Clin Orthop Relat Res 97–106 Marshall JL, Warren RF, Wickiewicz TL, Reider B (1979) The anterior cruciate ligament: a technique of repair and reconstruction. Clin Orthop Relat Res 97–106
29.
Zurück zum Zitat Murray MM, Fleming BC (2013) Biology of anterior cruciate ligament injury and repair: Kappa delta ann doner vaughn award paper 2013. J Orthop Res 31:1501–1506CrossRef Murray MM, Fleming BC (2013) Biology of anterior cruciate ligament injury and repair: Kappa delta ann doner vaughn award paper 2013. J Orthop Res 31:1501–1506CrossRef
30.
Zurück zum Zitat Murray MM, Flutie BM, Kalish LA, Ecklund K, Fleming BC, Proffen BL et al (2016) The bridge-enhanced anterior cruciate ligament repair (BEAR) procedure: an early feasibility cohort study. Orthop J Sports Med 4:2325967116672176PubMedPubMedCentral Murray MM, Flutie BM, Kalish LA, Ecklund K, Fleming BC, Proffen BL et al (2016) The bridge-enhanced anterior cruciate ligament repair (BEAR) procedure: an early feasibility cohort study. Orthop J Sports Med 4:2325967116672176PubMedPubMedCentral
31.
Zurück zum Zitat Murray MM, Spindler KP, Abreu E, Muller JA, Nedder A, Kelly M et al (2007) Collagen-platelet rich plasma hydrogel enhances primary repair of the porcine anterior cruciate ligament. J Orthop Res 25:81–91CrossRef Murray MM, Spindler KP, Abreu E, Muller JA, Nedder A, Kelly M et al (2007) Collagen-platelet rich plasma hydrogel enhances primary repair of the porcine anterior cruciate ligament. J Orthop Res 25:81–91CrossRef
32.
Zurück zum Zitat Radford WJ, Amis AA, Heatley FW (1994) Immediate strength after suture of a torn anterior cruciate ligament. J Bone Joint Surg Br 76:480–484CrossRef Radford WJ, Amis AA, Heatley FW (1994) Immediate strength after suture of a torn anterior cruciate ligament. J Bone Joint Surg Br 76:480–484CrossRef
35.
Zurück zum Zitat Stephen JM, Halewood C, Kittl C, Bollen SR, Williams A, Amis AA (2016) Posteromedial meniscocapsular lesions increase tibiofemoral joint laxity with anterior cruciate ligament deficiency, and their repair reduces laxity. Am J Sports Med 44:400–408CrossRef Stephen JM, Halewood C, Kittl C, Bollen SR, Williams A, Amis AA (2016) Posteromedial meniscocapsular lesions increase tibiofemoral joint laxity with anterior cruciate ligament deficiency, and their repair reduces laxity. Am J Sports Med 44:400–408CrossRef
36.
Zurück zum Zitat van der List JP, DiFelice GS (2017) Role of tear location on outcomes of open primary repair of the anterior cruciate ligament: a systematic review of historical studies. Knee 24:898–908CrossRef van der List JP, DiFelice GS (2017) Role of tear location on outcomes of open primary repair of the anterior cruciate ligament: a systematic review of historical studies. Knee 24:898–908CrossRef
38.
Zurück zum Zitat Vavken P, Fleming BC, Mastrangelo AN, Machan JT, Murray MM (2012) Biomechanical outcomes after bioenhanced anterior cruciate ligament repair and anterior cruciate ligament reconstruction are equal in a porcine model. Arthroscopy 28:672–680CrossRef Vavken P, Fleming BC, Mastrangelo AN, Machan JT, Murray MM (2012) Biomechanical outcomes after bioenhanced anterior cruciate ligament repair and anterior cruciate ligament reconstruction are equal in a porcine model. Arthroscopy 28:672–680CrossRef
39.
Zurück zum Zitat Wilson WT, Hopper GP, Byrne PA, MacKay GM (2016) Anterior cruciate ligament repair with internal brace ligament augmentation. Surg Technol Int XXIX:273–278 Wilson WT, Hopper GP, Byrne PA, MacKay GM (2016) Anterior cruciate ligament repair with internal brace ligament augmentation. Surg Technol Int XXIX:273–278
40.
Zurück zum Zitat Zavras TD, Race A, Bull AM, Amis AA (2001) A comparative study of ‘isometric’ points for anterior cruciate ligament graft attachment. Knee Surg Sports Traumatol Arthrosc 9:28–33CrossRef Zavras TD, Race A, Bull AM, Amis AA (2001) A comparative study of ‘isometric’ points for anterior cruciate ligament graft attachment. Knee Surg Sports Traumatol Arthrosc 9:28–33CrossRef
Metadaten
Titel
Dynamic augmentation restores anterior tibial translation in ACL suture repair: a biomechanical comparison of non-, static and dynamic augmentation techniques
verfasst von
Roy A. G. Hoogeslag
Reinoud W. Brouwer
Rianne Huis in ‘t Veld
Joanna M. Stephen
Andrew A. Amis
Publikationsdatum
03.02.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Knee Surgery, Sports Traumatology, Arthroscopy / Ausgabe 10/2018
Print ISSN: 0942-2056
Elektronische ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-018-4848-z

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