Orthopaedic Bioengineering Research Center, Newton-Wellesley Hospital/Massachusetts General Brigham, Newton, MA, 02462, USA.
Department of Orthopaedic Surgery, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.
Ann Biomed Eng. 2023 Oct;51(10):2237-2244. doi: 10.1007/s10439-023-03259-1. Epub 2023 Jun 1.
This study aimed to develop and validate a novel flexion axis concept by calculating the points on femoral condyles that could maintain constant heights during knee flexion. Twenty-two knees of 22 healthy subjects were investigated when performing a weightbearing single leg lunge. The knee positions were captured using a validated dual fluoroscopic image system. The points on sagittal planes of the femoral condyles that had minimal changes in heights from the tibial plane along the flexion path were calculated. It was found that the points do formulate a medial-lateral flexion axis that was defined as the iso-height axis (IHA). The six degrees of freedom (6DOF) kinematics data calculated using the IHA were compared with those calculated using the conventional transepicondylar axis and geometrical center axis. The IHA measured minimal changes in proximal-distal translations and varus-valgus rotations along the flexion path, indicating that the IHA may have interesting clinical implications. Therefore, identifying the IHA could provide an alternative physiological reference for improvement of contemporary knee surgeries, such as ligament reconstruction and knee replacement surgeries that are aimed to reproduce normal knee kinematics and medial/lateral soft tissue tensions during knee flexion.
本研究旨在通过计算股骨髁在膝关节屈曲过程中保持恒定高度的点,来开发和验证一种新的屈曲轴概念。本研究对 22 名健康受试者在进行负重单腿弓步时的 22 条膝关节进行了研究。使用经过验证的双荧光透视图像系统捕获膝关节位置。计算了在矢状面中,沿屈曲路径从胫骨平面高度变化最小的股骨髁上的点。结果发现,这些点形成了一个内外侧的屈曲轴,定义为等高度轴(IHA)。使用 IHA 计算的六自由度(6DOF)运动学数据与使用传统的髁间轴和几何中心轴计算的结果进行了比较。IHA 在沿屈曲路径的近-远位平移和内-外翻旋转方面测量到的变化最小,这表明 IHA 可能具有有趣的临床意义。因此,确定 IHA 可能为改善当代膝关节手术提供一种替代的生理参考,例如韧带重建和膝关节置换手术,这些手术旨在复制膝关节屈曲过程中的正常膝关节运动学和内侧/外侧软组织张力。