Development of a Passive Knee Motion Simulator to Evaluate Deep Knee Flexion of Total Knee Prosthesis
Author:
Affiliation:
1. Graduate School of Science and Engineering, Saga University
2. Research Department, Japan Medical Materials Co.
3. Faculty of Medicine, Saga University
Publisher
Japan Society of Mechanical Engineers
Subject
Biomedical Engineering
Link
http://www.jstage.jst.go.jp/article/jbse/4/4/4_4_562/_pdf
Reference26 articles.
1. (1) Akagi M., Nakamura T., Matsusue Y., Ueo T., Nishijyo K.i, Ohnishi E., The Bisurface Total Knee Replacement: A Unique Design for Flexion. Four-to-Nine-Year Follow-up Study, The Journal of Bone and Joint Surgery, Vol.82-A, No.11 (2000), pp.1626-1633.
2. (2) Akagi M., Total Knee Arthroplasty (2005), pp.311-316, Springer Berlin Heidelberg.
3. (3) Nakagawa S., Kadoya Y., Todo S., Kobayashi A., Sakamoto H., Freeman M.A., Yamano Y., Tibiofemoral Motion 3: Full Flexion in the Living Knee Studied by MRI. The Journal of Bone and Joint Surgery, Vol.82-B, No.8 (2000), pp.1199-1200.
4. (4) Nagura T., Dyrby C. O., Alexander E. J., Andriacchi T. P., Mechanical Loads at the Knee Join during Deep Flexion, Journal of Orthopedic Research, Vol.20 (2002), pp.881-886.
5. (5) Bellemans J., Banks S., Victor J., Vandenneucker H., Moemans A., Fluoroscopic Analysis of the Kinematics of Deep Flexion in Total Knee Arthroplasty: Influent of Posterior Condylar Offset, The Journal of Bone and Joint Surgery, Vol.84-B, No.1 (2002), pp.50-53.
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1. Development of the novel simulator that reproduces physiological and active knee motion;Transactions of the JSME (in Japanese);2015
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