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Accurate measurement of three-dimensional knee replacement kinematics using single-plane fluoroscopy

IEEE Transactions on Biomedical Engineering · 1996 · Vol. 43(6) · pp. 638–649
Scott A. BanksW. Andrew Hodge

Abstract

A simple extension of a previously reported object recognition technique has been used to implement a six-degree-of-freedom position/orientation estimator for the measurement of knee replacement motion from two-dimensional (2-D) fluoroscopic images. Computer modeling studies and controlled mechanical tests were performed to assess the accuracy of the technique. The results indicate that knee rotations can be measured with an accuracy of approximately one degree and that sagittal plane translations can be measured with an accuracy of approximately 0.5 mm. The measurement technique is uniquely well suited for performing dynamic kinematic measurements on individuals with knee replacements, and for performing comparative studies among subjects with different designs of knee replacements.

Total Knee Arthroplasty OutcomesLower Extremity Biomechanics and PathologiesDiabetic Foot Ulcer Assessment and ManagementKinematicsSagittal planeFluoroscopyOrientation (vector space)Total knee replacementComputer scienceKnee replacementPosition (finance)Knee JointComputer vision

MeSH terms

Computer SimulationFeasibility StudiesFluoroscopyFourier AnalysisHumansKnee ProsthesisModels, BiologicalProsthesis DesignRadiographic Image EnhancementRegression AnalysisRange of Motion, ArticularIn Vitro Techniques

Funding

  • American College of Surgeons
Citations
591
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3.80
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94%
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Cited by
In vivo kinematics of cruciate-retaining and -substituting knee arthroplasties
The Journal of Arthroplasty · 1997 · 307 citations
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