Suppr超能文献

与国际生物力学学会的建议相比,使用功能轴的关节坐标系可实现有临床意义的胫股关节运动学。

Joint Coordinate System Using Functional Axes Achieves Clinically Meaningful Kinematics of the Tibiofemoral Joint as Compared to the International Society of Biomechanics Recommendation.

作者信息

Pourtabib Joe, Hull M L

机构信息

Department of Biomedical Engineering, University of California Davis, Davis, CA 95616.

Department of Biomedical Engineering, University of California Davis, Davis, CA 95616; Department of Mechanical Engineering, University of California Davis, Davis, CA 95616; Department of Orthopaedic Surgery, University of California Davis Medical Center, Sacramento, CA 95817.

出版信息

J Biomech Eng. 2023 May 1;145(5). doi: 10.1115/1.4056654.

Abstract

Quantification of clinically meaningful tibiofemoral motions requires a joint coordinate system (JCS) with motions free from kinematic crosstalk errors. The objectives were to use a JCS with literature-backed functional axes (FUNC) and a JCS recommended by the International Society of Biomechanics (ISB) to determine tibiofemoral kinematics of the native (i.e., healthy) knee, determine variability associated with each JCS, and determine whether the FUNC JCS significantly reduced kinematic crosstalk errors compared to the ISB JCS. Based on a kinematic model consisting of a three-cylindric joint chain, the FUNC JCS included functional flexion-extension (F-E) and internal-external (I-E) tibial rotation axes. In contrast, the ISB JCS included F-E and I-E axes defined using anatomic landmarks. Single-plane fluoroscopic images in 13 subjects performing a weighted deep knee bend were analyzed. Tibiofemoral kinematics using the FUNC JCS fell within the physiological range of motion in all six degrees-of-freedom. Internal tibial rotation averaged 13 deg for the FUNC JCS versus 10 deg for the ISB JCS and motions in the other four degrees-of-freedom (collectively termed off-axis motions) were minimal as expected based on biomechanical constraints. Off-axis motions for the ISB JCS were significantly greater; maximum valgus rotation was 4 deg and maximum anterior and distraction translations were 9 mm and 25 mm, respectively, which is not physiologic. Variabilities in off-axis motions were significantly greater with the ISB JCS (p < 0.0002). The FUNC JCS achieved clinically meaningful kinematics by significantly reducing kinematic crosstalk errors and is the more suitable coordinate system for quantifying tibiofemoral motions.

摘要

对具有临床意义的胫股关节运动进行量化,需要一个关节坐标系(JCS),其运动不受运动学串扰误差的影响。目的是使用具有文献支持的功能轴(FUNC)的关节坐标系和国际生物力学学会(ISB)推荐的关节坐标系,来确定天然(即健康)膝关节的胫股关节运动学,确定与每个关节坐标系相关的变异性,并确定与ISB关节坐标系相比,FUNC关节坐标系是否能显著减少运动学串扰误差。基于一个由三圆柱关节链组成的运动学模型,FUNC关节坐标系包括功能性屈伸(F-E)和胫骨干内外(I-E)旋转轴。相比之下,ISB关节坐标系包括使用解剖标志定义的F-E和I-E轴。对13名进行负重深蹲的受试者的单平面荧光透视图像进行了分析。使用FUNC关节坐标系的胫股关节运动学在所有六个自由度上均落在生理运动范围内。FUNC关节坐标系下胫骨干内旋平均为13°,而ISB关节坐标系下为10°,基于生物力学限制,其他四个自由度的运动(统称为离轴运动)如预期的那样最小。ISB关节坐标系的离轴运动明显更大;最大外翻旋转为4°,最大前后平移和牵张平移分别为9毫米和25毫米,这不符合生理情况。ISB关节坐标系的离轴运动变异性显著更大(p < 0.0002)。FUNC关节坐标系通过显著减少运动学串扰误差实现了具有临床意义的运动学,是量化胫股关节运动更合适的坐标系。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验