A Dynamic Model of Human Limb Selection

Ralf F. A. Cox
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Abstract

Two experiments and a dynamic model forhuman limb selection are reported. In Experiment 1, left-handed and right-handed participants (N = 36) repeatedly used one hand for grasping a small cube. After a clear switch in the cube’s location, perseverative limb selection was revealed in both handedness groups. In Experiment 2, the cubes were presented in a clockwise and counter-clockwise sequence to right-handed participants (N = 15). A spatial shift in the switch point between right-hand use and left-hand use was observed. The model simulates the experiments by implementing the nonlinear multiple-timescale dynamics of the action-selection process underlying limb selection. It integrates two mechanisms that were earlier proposed to underlie this selection aspect of manual activity: limb dominance and attentional information. Finally, the model is used to simulate an influential earlier experiment, by establishing a conceptual link between cross-lateral inhibition asymmetry and the direction and strength of handedness.
人体肢体选择的动态模型
本文报道了人体肢体选择的两个实验和一个动态模型。在实验1中,左撇子和右撇子参与者(N = 36)反复用一只手抓一个小立方体。在立方体位置发生明显改变后,两个惯用手组都出现了持续性肢体选择。在实验2中,立方体以顺时针和逆时针的顺序呈现给右撇子参与者(N = 15)。在右手使用和左手使用之间的切换点的空间移动被观察到。该模型通过实现肢体选择下动作选择过程的非线性多时间尺度动力学来模拟实验。它整合了先前提出的两种机制,这两种机制是手工活动选择方面的基础:肢体优势和注意信息。最后,通过建立横向抑制不对称性与利手性方向和强度之间的概念联系,该模型被用于模拟一个有影响力的早期实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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