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A digit alignment device for kinematic analysis of the thumb and index finger

机译:用于拇指和食指的运动学分析的数字对齐装置

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摘要

Kinematic analysis of the digits using optical motion capture systems relies on defining accurate coordinate systems for the individual segments. Limitations of previous digit kinematic protocols include marker placement errors, marker occlusion and superimposition, and skin movement artifact. The purpose of this study was to develop a protocol utilizing a digit alignment device (DAD) and nail marker clusters to overcome these limitations. Ten subjects underwent 10 static calibration trials for validation. The orientation of the thumb distal phalange relative to the index finger distal phalange was described using Euler angles of pitch(x), yaw(y’), and roll(z”). The digit calibration protocol demonstrated high accuracy (0.5°, 1.9° and 2.2° for x, y’, z”) and precision (1.4°, 2.3° and 3.1° for x, y’, z”). The developed protocol provided convenient identification of transformations that determine anatomically relevant coordinate systems for the distal phalanges of the digits. The potential of utilizing this protocol as a standardized tool for digit kinematics was demonstrated using a dynamic task of precision pinching.
机译:使用光学运动捕获系统的数字的运动学分析依赖于定义各个段的精确坐标系。先前数位运动协议的局限性包括标记放置误差,标记闭塞和叠加,以及皮肤运动伪影。本研究的目的是利用数字对准装置(爸爸)和指甲标记集群来开发协议,以克服这些限制。十个受试者接受了10个静态校准试验进行验证。使用间距(x),横摆(y')和卷(z“)的欧拉角度描述了相对于食指远端角ange的拇指远端分子的取向。数字校准协议展示了高精度(0.5°,1.9°和2.2°,X,Y',Z“)和精度(1.4°,2.3°和3.1°,X,Y',Z”)。开发的协议提供了方便地识别转换,从而确定用于数字远端角的解剖相关坐标系。利用该协议作为数字运动学标准化工具的电位使用精密夹紧的动态任务进行了说明。

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