Length change patterns in the lateral extra-articular structures of the knee and related reconstructions
File(s)
Author(s)
Type
Journal Article
Abstract
Background:
Lateral extra-articular soft tissue reconstructions in the knee may be used as a combined procedure in revision anterior cruciate ligament surgery as well as in primary treatment for patients who demonstrate excessive anterolateral rotatory instability. Only a few studies examining length change patterns and isometry in lateral extra-articular reconstructions have been published.
Purpose:
To determine a recommended femoral insertion area and graft path for lateral extra-articular reconstructions by measuring length change patterns through a range of knee flexion angles of several combinations of tibial and femoral insertion points on the lateral side of the knee.
Study Design:
Controlled laboratory study.
Methods:
Eight fresh-frozen cadaveric knees were freed of skin and subcutaneous fat. The knee was then mounted in a kinematics rig that loaded the quadriceps muscles and simulated open-chain knee flexion. The length changes of several combinations of tibiofemoral points were measured at knee flexion angles between 0° and 90° by use of linear variable displacement transducers. The changes in length relative to the 0° measurement were recorded.
Results:
The anterior fiber region of the iliotibial tract displayed a significantly different (P < .001) length change pattern compared with the posterior fiber region. The reconstructions that had a femoral insertion site located proximal to the lateral epicondyle and with the grafts passed deep to the lateral collateral ligament displayed similar length change patterns to each other, with small length increases during knee extension. These reconstructions also showed a significantly lower total strain range compared with the reconstruction located anterior to the epicondyle (P < .001).
Conclusion:
These findings show that the selection of graft attachment points and graft course affects length change pattern during knee flexion. A graft attached proximal to the lateral femoral epicondyle and running deep to the lateral collateral ligament will provide desirable graft behavior, such that it will not suffer excessive tightening or slackening during knee motion.
Clinical Relevance:
These results provide a surgical rationale for lateral extra-articular soft tissue reconstruction in terms of femoral graft fixation site and graft route.
Lateral extra-articular soft tissue reconstructions in the knee may be used as a combined procedure in revision anterior cruciate ligament surgery as well as in primary treatment for patients who demonstrate excessive anterolateral rotatory instability. Only a few studies examining length change patterns and isometry in lateral extra-articular reconstructions have been published.
Purpose:
To determine a recommended femoral insertion area and graft path for lateral extra-articular reconstructions by measuring length change patterns through a range of knee flexion angles of several combinations of tibial and femoral insertion points on the lateral side of the knee.
Study Design:
Controlled laboratory study.
Methods:
Eight fresh-frozen cadaveric knees were freed of skin and subcutaneous fat. The knee was then mounted in a kinematics rig that loaded the quadriceps muscles and simulated open-chain knee flexion. The length changes of several combinations of tibiofemoral points were measured at knee flexion angles between 0° and 90° by use of linear variable displacement transducers. The changes in length relative to the 0° measurement were recorded.
Results:
The anterior fiber region of the iliotibial tract displayed a significantly different (P < .001) length change pattern compared with the posterior fiber region. The reconstructions that had a femoral insertion site located proximal to the lateral epicondyle and with the grafts passed deep to the lateral collateral ligament displayed similar length change patterns to each other, with small length increases during knee extension. These reconstructions also showed a significantly lower total strain range compared with the reconstruction located anterior to the epicondyle (P < .001).
Conclusion:
These findings show that the selection of graft attachment points and graft course affects length change pattern during knee flexion. A graft attached proximal to the lateral femoral epicondyle and running deep to the lateral collateral ligament will provide desirable graft behavior, such that it will not suffer excessive tightening or slackening during knee motion.
Clinical Relevance:
These results provide a surgical rationale for lateral extra-articular soft tissue reconstruction in terms of femoral graft fixation site and graft route.
Date Issued
2015-02-01
Date Acceptance
2014-12-01
Citation
American Journal of Sports Medicine, 2015, 43 (2), pp.354-362
ISSN
0363-5465
Publisher
SAGE Publications
Start Page
354
End Page
362
Journal / Book Title
American Journal of Sports Medicine
Volume
43
Issue
2
Copyright Statement
© 2014 The Author(s). The final, definitive version of this paper has been published in The Journal of Sports Medicine 2015, 43, 354, published by Sage Publications Ltd, All rights reserved. It is available at: http://ajs.sagepub.com/content/43/2/354
Identifier
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000350470600013&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=1ba7043ffcc86c417c072aa74d649202
Subjects
Science & Technology
Life Sciences & Biomedicine
Orthopedics
Sport Sciences
lateral extra-articular soft tissue reconstruction
anterolateral rotatory instability
isometry
length change pattern
knee, anterior cruciate ligament
anterolateral ligament
ANTERIOR CRUCIATE-LIGAMENT
ILIOTIBIAL-BAND TRANSFER
ANTEROLATERAL ROTATORY INSTABILITY
ACL RECONSTRUCTION
FOLLOW-UP
GRAFT PLACEMENT
DEFICIENT KNEE
TENODESIS
TRACT
ANATOMY
Publication Status
Published
Date Publish Online
2014-12-24