首页> 外文期刊>Journal of Physiological Anthropology >Adaptation effects in static postural control by providing simultaneous visual feedback of center of pressure and center of gravity
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Adaptation effects in static postural control by providing simultaneous visual feedback of center of pressure and center of gravity

机译:通过同时提供压力中心和重心的视觉反馈来实现静态姿势控制中的适应效果

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BackgroundThe benefit of visual feedback of the center of pressure (COP) on quiet standing is still debatable. This study aimed to investigate the adaptation effects of visual feedback training using both the COP and center of gravity (COG) during quiet standing. MethodsThirty-four healthy young adults were divided into three groups randomly (COP?+?COG, COP, and control groups). A force plate was used to calculate the coordinates of the COP in the anteroposterior (COPAP) and mediolateral (COPML) directions. A motion analysis system was used to calculate the coordinates of the center of mass (COM) in both directions (COMAP and COMML). The coordinates of the COG in the AP direction (COGAP) were obtained from the force plate signals. Augmented visual feedback was presented on a screen in the form of fluctuation circles in the vertical direction that moved upward as the COPAP and/or COGAP moved forward and vice versa. The COP?+?COG group received the real-time COPAP and COGAP feedback simultaneously, whereas the COP group received the real-time COPAP feedback only. The control group received no visual feedback. In the training session, the COP?+?COG group was required to maintain an even distance between the COPAP and COGAP and reduce the COGAP fluctuation, whereas the COP group was required to reduce the COPAP fluctuation while standing on a foam pad. In test sessions, participants were instructed to keep their standing posture as quiet as possible on the foam pad before (pre-session) and after (post-session) the training sessions. ResultsIn the post-session, the velocity and root mean square of COMAP in the COP?+?COG group were lower than those in the control group. In addition, the absolute value of the sum of the COP???COM distances in the COP?+?COG group was lower than that in the COP group. Furthermore, positive correlations were found between the COMAP velocity and COP???COM parameters. ConclusionsThe results suggest that the novel visual feedback training that incorporates the COPAP–COGAP interaction reduces postural sway better than the training using the COPAP alone during quiet standing. That is, even COPAP fluctuation around the COGAP would be effective in reducing the COMAP velocity.
机译:背景技术静压站立时视觉中心的视觉反馈的好处仍然值得商bat。这项研究旨在调查在安静站立时使用COP和重心(COG)进行视觉反馈训练的适应效果。方法将34名健康的年轻人随机分为三组(COP2 +?COG,COP和对照组)。用力板计算COP在前后(COP AP )和内侧(COP ML )方向的坐标。使用运动分析系统来计算两个方向(COM AP 和COM ML )上质心(COM)的坐标。从压板信号中获得了COG在AP方向上的坐标(COG AP )。随着COP AP 和/或COG AP 向前移动,增强的视觉反馈以垂直方向上的波动圆的形式呈现在屏幕上,反之亦然。 COP?+?COG组同时接收到实时COP AP 和COG AP 反馈,而COP组收到了实时COP AP 仅反馈。对照组没有视觉反馈。在培训中,要求COP?+?COG组保持COP AP 和COG AP 之间的距离均匀,并减少COG AP 波动,而COP组则需要站在泡沫垫上以减少COP AP 波动。在测试中,指示参与者在训练前(训练前)和训练后(训练后)在泡沫垫上保持尽可能安静的站立姿势。结果COP?+?COG组在治疗后,COM AP 的速度和均方根均低于对照组。另外,在COP 1 +ΔCOG组中,COP -COM距离之和的绝对值低于在COP组中。此外,在COM AP 速度和COP ??? COM参数之间发现正相关。结论结果表明,与COP AP 训练相比,结合COP AP –COG AP 交互作用的新型视觉反馈训练可更好地减少姿势摇摆安静站立时独自一人。也就是说,即使CO AP 周围的COP AP 波动也将有效地降低COM AP 的速度。

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