Literature DB >> 12071264

A modeling study of partial ACL injury: simulated KT-2000 arthrometer tests.

Wen Liu1, Murray E Maitland, G Douglas Bell.   

Abstract

A partial ACL injury may involve different levels of fiber disruption, orfibers may sustain microscopic changes in their structure without gross disruption, resulting in a change in ligament function. The effect of partial ACL tears on the mechanical and functional stability of the knee has not been well documented, in part because of diagnostic difficulties. A computer model of the knee in the sagittal plane was used in this study to simulate tests using the KT-2000 Knee Arthrometer, which quantifies Lachman's test for ACL injury. A variety of partial ACL anterior and posterior bundle injuries were simulated. Anterior and posterior bundle injuries were subdivided into four different simulated injury levels: mild (one-half tear of the bundle), moderate (complete tear of the bundle), severe (complete tear of the bundle and tear of one-half of the other bundle), and more severe (severe injury plus an additional elongation of the other bundle represented by 5% increases of its initial strain). Force-displacement results obtained from simulated KT-2000 knee arthrometer tests depended on the level of injury. Mild and moderate injuries produced only small change in the anterior tibial translation--at different force levels. Severe injury produced increased anterior tibial translation depending on which bundle was completely ruptured. The compliance index defined as the ratio of the displacement and the force within 68 N and 90 N anterior drawer forces, the stiffness, and the rate of change of stiffness of the anterior force-displacement were found to be better at predicting partial ACL ruptures than simple differences in anterior tibial translation. It was possible in the model results to discriminate knees with various levels of partial ACL injuries using the first and second derivatives of the force-displacement curve.

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Mesh:

Year:  2002        PMID: 12071264     DOI: 10.1115/1.1468636

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  12 in total

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Review 3.  Anterior cruciate ligament assessment using arthrometry and stress imaging.

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4.  Partial tears of the anterior cruciate ligament: diagnostic performance of isotropic three-dimensional fast spin echo (3D-FSE-Cube) MRI.

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5.  In vivo evaluation of intra-articular protection in a novel model of canine cranial cruciate ligament mid-substance elongation injury.

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6.  Arthrometric curve-shape variables to assess anterior cruciate ligament deficiency.

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7.  MR imaging of anterior cruciate ligament tears: is there a gender gap?

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8.  Partial tears of anterior cruciate ligament: Results of single bundle augmentation.

Authors:  Dhananjaya Sabat; Vinod Kumar
Journal:  Indian J Orthop       Date:  2015 Mar-Apr       Impact factor: 1.251

9.  Knee Examination under Anesthesia: Development of a Predictive Score for Partial Anterior Cruciate Ligament Tears.

Authors:  Max Ekdahl; Marcelo Acevedo; Cristian Dominguez; Maximiliano Barahona; Rodrigo Hernandez; Ignacio Mujica
Journal:  Knee Surg Relat Res       Date:  2018-09-01

10.  Posterolateral Bundle Reconstruction With Anteromedial Bundle Remnant Preservation in ACL Tears: Clinical and MRI Evaluation of 39 Patients With 24-Month Follow-up.

Authors:  Bertrand Sonnery-Cottet; Rachad Zayni; Jacopo Conteduca; Pooler Archbold; Thierry Prost; Yannick Carrillon; Julien Clechet; Mathieu Thaunat
Journal:  Orthop J Sports Med       Date:  2013-08-28
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