Journalartikel

Effect of malpositioned anterior cruciate ligament replacement on knee joint structures: a biomechanical model


AutorenlisteHoras, Uwe; Meissner, Stefan A.; Kraus, Ralf; Heiss, Christian; Schnettler, Reinhard

Jahr der Veröffentlichung2011

Seiten321-325

ZeitschriftBiomedical Engineering

Bandnummer56

Heftnummer6

ISSN0013-5585

eISSN1862-278X

DOI Linkhttps://doi.org/10.1515/BMT.2011.020

VerlagDe Gruyter Brill


Abstract
Any sort of malpositioning of anterior cruciate ligament (ACL) replacement leads to an overload of single fibers of the ACL replacement. As long as this does not result in a tear of these fibers so that isometry of the ACL replacement is restored, the abnormal forces acting in and on the ACL replacement are transmitted from the ACL replacement to the remainder of the knee joint structures. We assumed that the posterior cruciate ligament (PCL) is notably affected. The present biomechanical model illustrates the relevant force vectors and reveals the extent of the effect of malpositioned ACL replacement on knee joint structures, particularly the PCL. Further investigations are needed to find out if the presumably occurring overload of a malpositioned ACL replacement can be calculated from its position on an individual basis. This may help deduce recommendations for ACL replacement procedures in the future.



Zitierstile

Harvard-ZitierstilHoras, U., Meissner, S., Kraus, R., Heiss, C. and Schnettler, R. (2011) Effect of malpositioned anterior cruciate ligament replacement on knee joint structures: a biomechanical model, Biomedical Engineering, 56(6), pp. 321-325. https://doi.org/10.1515/BMT.2011.020

APA-ZitierstilHoras, U., Meissner, S., Kraus, R., Heiss, C., & Schnettler, R. (2011). Effect of malpositioned anterior cruciate ligament replacement on knee joint structures: a biomechanical model. Biomedical Engineering. 56(6), 321-325. https://doi.org/10.1515/BMT.2011.020



Schlagwörter


anterior cruciate ligamentFORCEKINETIC CHAIN EXERCISESknee jointmalpositionREPLACEMENT


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