4.5 Article

In vivo contact kinematics and contact forces of the knee after total knee arthroplasty during dynamic weight-bearing activities

期刊

JOURNAL OF BIOMECHANICS
卷 41, 期 10, 页码 2159-2168

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jbiomech.2008.04.021

关键词

total knee arthroplasty; in vivo forces; in vivo kinematics; articular contact; fluoroscopy

资金

  1. NIAMS NIH HHS [R21 AR051078-02, R21 AR051078, R21 AR051078-01A2] Funding Source: Medline
  2. NIBIB NIH HHS [R21 EB00458, R15 EB000458] Funding Source: Medline

向作者/读者索取更多资源

Analysis of polyethylene component wear and implant loosening in total knee arthroplasty (TKA) requires precise knowledge of in vivo articular motion and loading conditions. This study presents a simultaneous in vivo measurement of tibiofemoral articular contact forces and contact kinematics in three TKA patients. These measurements were accomplished via a dual fluoroscopic imaging system and instrumented tibial implants, during dynamic single leg lunge and chair rising-sitting. The measured forces and contact locations were also used to determine mediolateral distribution of axial contact forces. Contact kinematics data showed a medial pivot during flexion of the knee, for all patients in the study. Average axial forces were higher for lunge compared to chair rising-sitting (224% vs. 187% body weight). In this study, we measured peak anteroposterior and mediolateral forces averaging 13.3% BW during lunge and 18.5% BW during chair rising-sitting. Mediolateral distributions of axial contact force were both patient and activity specific. All patients showed equitable medial-lateral loading during lunge but greater loads at the lateral compartment during chair rising-sitting. The results of this study may enable more accurate reproduction of in vivo loads and articular motion patterns in wear simulators and finite element models. This in turn may help advance Our understanding of factors limiting longevity of TKA implants, such as aseptic loosening and polyethylene component wear, and enable improved TKA designs. (C) 2008 Elsevier Ltd. All rights reserved.

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