视觉生物反馈和姿势控制:探索潜在的内隐视觉整合。

IF 1.1 4区 心理学 Q4 NEUROSCIENCES
Lucas Michaud, Dominique Desjardins, Alexandre Perreault, Anne-Sophie Mayer, Marc-Olivier Sauvé, Renée Desjardins, Yves Lajoie
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引用次数: 0

摘要

人体摇摆的实时视觉生物反馈(vBF)可以通过减少压力中心(COP)位移来增强姿势控制。然而,其影响的机制仍不清楚,特别是关于内隐加工。本研究的目的是通过让40名年轻人同时接触实时(准确)和错误(延迟)的COP反馈,而不明确解释其目的,来检验vBF是否被隐性利用。参与者被要求尽可能地站着不动。实验结束后,40名参与者中有15人自发地认出了反馈的本质。结果表明,在准确的vBF下,有意识和无意识的参与者都表现出更好的姿势控制(即COP变异性减少,COP面积减小,COP不规则性增加,更依赖于更高的摆动频率)。相反,错误的vBF引起的变化很小。虽然这些发现强调了视觉反馈可能隐含的整合,但结果也强调了未来研究需要用更精细的方法来调查这一现象,因为将参与者分为有意识和无意识的群体存在一定的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visual Biofeedback and Postural Control: Exploring Potential Implicit Visual Integration.

Real-time visual biofeedback (vBF) of body sway is known to enhance postural control by reducing center of pressure (COP) displacement. However, the mechanisms underlying its influence remain unclear, particularly regarding implicit processing. The objective of this study was to examine whether vBF is utilized implicitly by exposing 40 young adults to both real-time (accurate) and erroneous (delayed) COP feedback without explicitly explaining its purpose. Participants were simply instructed to stand as still as possible. After the experiment, 15 out of 40 participants spontaneously recognized the feedback's nature. Results indicated that both aware and unaware participants exhibited improved postural control under accurate vBF (i.e., reduced COP variability, smaller COP area, increased COP irregularity, and greater reliance on higher sway frequencies). In contrast, erroneous vBF induced minimal changes. While these findings highlight a possible implicit integration of the visual feedback, the results also underscore the need for future research to investigate this phenomenon with more refined methods, as classifying participants into aware and unaware groups presents certain challenges.

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来源期刊
Journal of Motor Behavior
Journal of Motor Behavior 医学-神经科学
CiteScore
3.10
自引率
0.00%
发文量
39
审稿时长
>12 weeks
期刊介绍: The Journal of Motor Behavior, a multidisciplinary journal of movement neuroscience, publishes articles that contribute to a basic understanding of motor control. Articles from different disciplinary perspectives and levels of analysis are encouraged, including neurophysiological, biomechanical, electrophysiological, psychological, mathematical and physical, and clinical approaches. Applied studies are acceptable only to the extent that they provide a significant contribution to a basic issue in motor control. Of special interest to the journal are those articles that attempt to bridge insights from different disciplinary perspectives to infer processes underlying motor control. Those approaches may embrace postural, locomotive, and manipulative aspects of motor functions, as well as coordination of speech articulators and eye movements. Articles dealing with analytical techniques and mathematical modeling are welcome.
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