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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Sensing form - finger gaiting as key to tactile object exploration - a data glove analysis of a prototypical daily task
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Sensing form - finger gaiting as key to tactile object exploration - a data glove analysis of a prototypical daily task

机译:感应形式 - 手指Gaiting作为触觉对象探索的关键 - 一种原型日常任务的数据手套分析

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Motor hand skill and associated dexterity is important for meeting the challenges of daily activity and an important resource post-stroke. In this context, the present study investigated the finger movements of right-handed subjects during tactile manipulation of a cuboid, a prototypical task underlying tactile exploration. During one motor act, the thumb and fingers of one hand surround the cuboid in a continuous and regular manner. While the object is moved by the guiding thumb, the opposed supporting fingers are replaced once they reach their joint limits by free fingers, a mechanism termed finger gaiting. For both hands of 22 subjects, we acquired the time series of consecutive manipulations of a cuboid at a frequency of 1?Hz, using a digital data glove consisting of 29 sensors. Using principle component analysis, we decomposed the short action into motor patterns related to successive manipulations of the cuboid. The components purport to represent changing grasp configurations involving the stabilizing fingers and guiding thumb. The temporal features of the components permits testing whether the distinct configurations occur at the frequency of 1?Hz, i.e. within the time window of 1?s, and, thus, taxonomic classification of the manipulation as finger gaiting. The fraction of variance described by the principal components indicated that three components described the salient features of the single motor acts for each hand. Striking in the finger patterns was the prominent and varying roles of the MCP and PIP joints of the fingers, and the CMC joint of the thumb. An important aspect of the three components was their representation of distinct finger configurations within the same motor act. Principal component and graph theory analysis confirmed modular, functionally synchronous action of the involved joints. The computation of finger trajectories in one subject illustrated the workspace of the task, which differed for the right and left hands. In this task one complex motor act of 1?s duration could be described by three elementary and hierarchically ordered grasp configurations occurring at the prescribed frequency of 1?Hz. Therefore, these configurations represent finger gaiting, described until now only in artificial systems, as the principal mechanism underlying this prototypical task. clinicaltrials.gov, NCT02865642 , registered 12 August 2016.
机译:电机手技巧和相关的灵巧对于满足日常活动的挑战和中风后的重要资源是重要的。在这种情况下,本研究调查了在长方体的触觉操作期间右下主体的手指运动,触觉勘探潜在的原型任务。在一个电动机行动中,一只手的拇指和手指以连续和规则的方式围绕长方体。虽然物体被引导拇指移动,但是一旦它们通过自由手指达到它们的关节限制,就更换了相对的支撑手指,而这种机构被称为手指。对于22个受试者的两只手,我们使用由29个传感器组成的数字数据手套在1·Hz的频率下获得连续操纵长方体的时间序列。使用原理分量分析,我们将短暂的作用分解成与连续操作的连续操纵相关的电动机模式。该组件旨在表示涉及稳定手指和引导拇指的变化掌握配置。组件的时间特征允许测试不同的配置是否以1?Hz的频率发生,即在1?s的时间窗口内,并且因此,操纵作为手指步态的分类分类。由主组件描述的方差的分数表明,三个组件描述了每只手机的单个电动机的突出特征。在手指图案中醒目是手指的MCP和PIP接头的突出和变化的作用,以及拇指的CMC接头。三个组件的一个重要方面是它们在同一电动机行动中的不同手指配置的表示。主成分和图形理论分析证实了涉及关节的模块化,功能同步作用。在一个主题中的手指轨迹的计算说明了任务的工作空间,这对右手和左手不同。在此任务中,一个复杂的电动机行为1?S持续时间可以通过以1ΩHz的规定频率发生的三个基本和分层有序的掌握配置来描述。因此,这些配置代表手指Gaiting,直到现在仅在人工系统中描述,作为这种原型任务的主要机制。 Clinicaltrials.gov,NCT02865642,2016年8月12日注册。

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