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Predicting aperture crossing behavior from within-trial metrics of motor control reliability

机译:预测来自电机控制可靠性内部试验度量的孔径交叉行为

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Actors utilize intrinsically scaled information about their geometric and dynamic properties when perceiving their ability to pass through openings. Research about dynamic factors of affordance perception have shown that the reliability of a given movement, or the precision of one's motor control for that movement, increase the buffer space used when interacting with the environment. While previous work has assessed motor control reliability as a person-level variable (i.e., behavior is aggregated across many trials), the current study assessed how characteristics of motor control and movement reliability within a single trial impact real-time action strategies for passing through apertures. Participants walked 5 m and then passed through apertures of various widths while their motions were tracked. For each trial, we collected walking time-series data, then calculated the magnitude and complexity of the lateral sway. Assessing two behavioral measures of the buffer, we found that trial-level metrics of motor control reliability, in addition to the person-level metrics previously studied, significantly predicted the buffer on each trial. This study supports previous claims that actors pick up real-time information about their dynamic capabilities in order to perceive and act within their environment. Further, the study recommends that future affordance research consider trial-level movement data, including nonlinear analyses that inform the pattern and structure of motor control reliability.
机译:演员在感知自己通过洞口的能力时,利用其几何和动态特性的内在比例信息。关于启示感知的动态因素的研究表明,给定动作的可靠性,或运动控制的精度,增加了与环境交互时使用的缓冲空间。虽然之前的研究将运动控制可靠性评估为个人层面的变量(即,行为在多个试验中聚合),但当前的研究评估了单个试验中运动控制和运动可靠性的特征如何影响通过孔的实时行动策略。参与者步行5米,然后穿过不同宽度的孔,同时跟踪他们的运动。对于每个试验,我们收集行走时间序列数据,然后计算横向摆动的大小和复杂性。通过评估缓冲区的两个行为指标,我们发现,除了之前研究的个人水平指标外,运动控制可靠性的试验水平指标在每次试验中都显著预测缓冲区。这项研究支持了之前的说法,即参与者为了感知环境并在环境中行动,会获取有关其动态能力的实时信息。此外,研究建议,未来的启示研究考虑试验水平的运动数据,包括非线性分析,告知模式和结构的电机控制可靠性。

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