Literature DB >> 14707774

In vivo and noninvasive three-dimensional patellar tracking induced by individual heads of quadriceps.

Fang Lin1, Guangzhi Wang, Jason L Koh, Ronald W Hendrix, Li-Qun Zhang.   

Abstract

PURPOSE: Unbalanced actions of the quadriceps components are closely linked to patellar mal-tracking and patellofemoral pain syndrome. However, it is not clear how individual quadriceps components pull and rotate the patella three dimensionally. The purpose of this study was to investigate in vivo and noninvasively patellar tracking induced by individual quadriceps components.
METHODS: Individual quadriceps component was activated selectively through electrical stimulation at the muscle motor point, and the resulting patellar tracking was measured in vivo and noninvasively in 18 knees of 12 subjects. The in vivo and noninvasively patellar tracking was corroborated with in vivo fluoroscopy and in vitro cadaver measurements.
RESULTS: Vastus medialis (VM) mainly pulled the patella first in the medial and second in the proximal directions and vastus lateralis (VL) pulled first in the proximal and second in the lateral directions. The oblique portion (VMO) of the VM pulled the patella mainly medially and the longus portion (VML) more proximally. Medial tilt was the major patellar rotation induced by VMO contraction at full knee extension. With the knee at the more flexed positions, the amplitude of patellar movement induced by comparable quadriceps contractions was reduced significantly compared to that at full knee extension, and VMO changed its main action from extending to flexing the patella.
CONCLUSIONS: The medial and lateral quadriceps components moved the patella in rather different directions, and rotated the patella differently about the mediolateral tilt and mediolateral rotation axes but similarly in extension. The approach can be used to investigate patellar tracking in vivo and noninvasively in both healthy subjects and patients with patellofemoral disorder and patellar malalignment.

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Year:  2004        PMID: 14707774     DOI: 10.1249/01.MSS.0000106260.45656.CC

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  21 in total

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5.  The effect of different quadriceps loading patterns on tibiofemoral joint kinematics and patellofemoral contact pressure during simulated partial weight-bearing knee flexion.

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7.  Using real-time MRI to quantify altered joint kinematics in subjects with patellofemoral pain and to evaluate the effects of a patellar brace or sleeve on joint motion.

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9.  In vivo patellar tracking induced by individual quadriceps components in individuals with patellofemoral pain.

Authors:  Fang Lin; Nicole A Wilson; Mohsen Makhsous; Joel M Press; Jason L Koh; Gordon W Nuber; Li-Qun Zhang
Journal:  J Biomech       Date:  2009-10-29       Impact factor: 2.712

10.  Knee muscle forces during walking and running in patellofemoral pain patients and pain-free controls.

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Journal:  J Biomech       Date:  2009-03-06       Impact factor: 2.712

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