Improvement of the knee center of rotation during walking after opening wedge high tibial osteotomy

Author:

Kim Kyungsoo1,Feng Jun2,Nha Kyung Wook3,Park Won Man2,Kim Yoon Hyuk2

Affiliation:

1. Department of Applied Mathematics, Kyung Hee University, Yongin-si, Korea

2. Department of Mechanical Engineering, Kyung Hee University, Yongin-si, Korea

3. Department of Orthopaedic Surgery, Inje University, Ilsan Paik Hospital, Goyang-si, Korea

Abstract

Accurate measurement of the center of rotation of the knee joint is indispensable for prediction of joint kinematics and kinetics in musculoskeletal models. However, no study has yet identified the knee center of rotations during several daily activities before and after high tibial osteotomy surgery, which is one surgical option for treating knee osteoarthritis. In this study, an estimation method for determining the knee joint center of rotation was developed by applying the optimal common shape technique and symmetrical axis of rotation approach techniques to motion-capture data and validated for typical activities (walking, squatting, climbing up stairs, walking down stairs) of 10 normal subjects. The locations of knee joint center of rotations for injured and contralateral knees of eight subjects with osteoarthritis, both before and after high tibial osteotomy surgery, were then calculated during walking. It was shown that high tibial osteotomy surgery improved the knee joint center of rotation since the center of rotations for the injured knee after high tibial osteotomy surgery were significantly closer to those of the normal healthy population. The difference between the injured and contralateral knees was also generally reduced after surgery, demonstrating increased symmetry. These results indicate that symmetry in both knees can be recovered in many cases after high tibial osteotomy surgery. Moreover, the recovery of center of rotation in the injured knee was prior to that of symmetry. This study has the potential to provide fundamental information that can be applied to understand abnormal kinematics in patients, diagnose knee joint disease, and design a novel implants for knee joint surgeries.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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