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成人多感觉姿势控制:视觉、触觉和本体感觉输入的变化。

Multisensory postural control in adults: Variation in visual, haptic, and proprioceptive inputs.

机构信息

University of Toronto Scarborough, Canada.

University of Toronto Scarborough, Canada.

出版信息

Hum Mov Sci. 2021 Oct;79:102845. doi: 10.1016/j.humov.2021.102845. Epub 2021 Aug 3.

Abstract

Maintaining balance is fundamentally a multisensory process, with visual, haptic, and proprioceptive information all playing an important role in postural control. The current project examined the interaction between such sensory inputs, manipulating visual (presence versus absence), haptic (presence versus absence of contact with a stable or unstable finger support surface), and proprioceptive (varying stance widths, including shoulder width stance, Chaplin [heels together, feet splayed at approximately 60°] stance, feet together stance, and tandem stance) information. Analyses of mean velocity of the Centre of Pressure (CoP) revealed significant interactions between these factors, with stability gains observed as a function of increasing sensory information (e.g., visual, haptic, visual + haptic), although the nature of these gains was modulated by the proprioceptive information and the reliability of the haptic support surface (i.e., unstable versus stable finger supports). Subsequent analyses on individual difference parameters (e.g., height, leg length, weight, and areas of base of support) revealed that these variables were significantly related to postural measures across experimental conditions. These findings are discussed relative to their implications for multisensory postural control, and with respect to inverted pendulum models of balance. (185 words).

摘要

维持平衡从根本上说是一个多感觉的过程,视觉、触觉和本体感觉信息在姿势控制中都起着重要作用。本项目研究了这些感觉输入之间的相互作用,通过操纵视觉(存在与不存在)、触觉(接触稳定或不稳定的手指支撑表面的存在与不存在)和本体感觉(改变站位宽度,包括肩宽站位、卓别林站位[脚跟并拢,脚大约张开 60°]、双脚并拢站位和串联站位)信息。对压力中心(CoP)的平均速度的分析显示了这些因素之间的显著相互作用,随着感觉信息的增加(例如视觉、触觉、视觉+触觉),稳定性得到了提高,尽管这些增益的性质受到本体感觉和触觉支撑表面的可靠性(即不稳定的手指支撑和稳定的手指支撑)的调节。对个体差异参数(例如身高、腿长、体重和支撑面积)的后续分析表明,这些变量与实验条件下的姿势测量显著相关。这些发现与多感觉姿势控制的意义以及平衡的倒立摆模型有关。(185 个单词)。

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