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用于评估后足运动学的矢状面荧光透视检查

Sagittal Fluoroscopy for the Assessment of Hindfoot Kinematics.

作者信息

McHenry Benjamin D, Exten Emily, Long Jason T, Harris Gerald F

出版信息

J Biomech Eng. 2016 Mar;138(3):4032445. doi: 10.1115/1.4032445.

Abstract

Current methods of quantifying foot kinematics during gait typically use markers placed externally on bony anatomic locations. These models are unable to analyze talocrural or subtalar motion because the talus lacks palpable landmarks to place external markers. Alternative methods of measuring these clinically relevant joint motions are invasive and have been limited to research purposes only. This study explores the use of fluoroscopy to noninvasively quantify talocrural and subtalar sagittal plane kinematics. A fluoroscopy system (FS) was designed and built to synchronize with an existing motion analysis system (MAS). Simultaneous fluoroscopic, marker motion, and ground reaction force (GRF) data were collected for five subjects to demonstrate system application. A hindfoot sagittal plane model was developed to evaluate talocrural and subtalar joint motion. Maximum talocrural plantar and dorsiflexion angles averaged among all the subjects occur at 12% and 83% of stance, respectively, with a range of motion of 20.1 deg. Maximum talocrural plantar and dorsiflexion angles averaged among all the subjects occur at toe-off and 67% of stance, respectively, with a range of motion of 8.7 deg. Based on the favorable comparison between the current fluoroscopically measured kinematics and previously reported results from alternative methods, it is concluded that fluoroscopic technology is well suited for measuring the sagittal plane hindfoot motion.

摘要

当前在步态期间量化足部运动学的方法通常使用放置在骨骼解剖位置外部的标记物。这些模型无法分析距小腿关节或距下关节的运动,因为距骨缺乏可触及的标志点来放置外部标记物。测量这些临床相关关节运动的替代方法具有侵入性,并且仅限于研究目的。本研究探索使用荧光透视法以非侵入方式量化距小腿关节和距下关节矢状面的运动学。设计并构建了一个荧光透视系统(FS),使其与现有的运动分析系统(MAS)同步。为五名受试者收集了同步的荧光透视、标记物运动和地面反作用力(GRF)数据,以展示系统的应用。开发了一个后足矢状面模型来评估距小腿关节和距下关节的运动。所有受试者的距小腿关节最大跖屈和背屈角度平均分别出现在站立期的12%和83%,运动范围为20.1°。所有受试者的距小腿关节最大跖屈和背屈角度平均分别出现在足趾离地和站立期的67%,运动范围为8.7°。基于当前荧光透视测量的运动学与先前报道的替代方法结果之间的良好比较,得出结论:荧光透视技术非常适合测量后足矢状面运动。

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