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Gender differences of the improvement in balance control based on the real-time visual feedback system with smart wearable devices

机译:基于实时视觉反馈系统的平衡控制改善性别差异

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Purpose: The body maintains stability by integrating inputs from the central nervous system of vision, hearing, proprioception, and multiple senses. With the development of smart wearable devices, smart wearable devices can provide real-time center of pressure position-assisted balance control, which is beneficial to maintain physical balance. Methods: Forty healthy college students (20 male, 20 female) participated in this study, and the posture balance actions of left-leg stance non-visual feedback, left-leg stance visual feedback, right-leg stance non-visual feedback, and right-leg stance visual feedback were performed. Visual feedback provided smart insoles matching Podoon APP on a tablet computer with the COP position displayed by a dot as real-time visual feedback. Results: The experimental results show that the displacement, velocity, radius, and area of the COP decreased significantly in the left-leg stance visual feedback/right-leg stance visual feedback, the test compared the parameters in the left-leg stance non-visual feedback/right-leg stance nonvisual feedback (P 0.05). Providing visual feedback through intelligent insoles can reduce the movement of the center of mass and maintain physical stability for healthy young people of different genders. In the one leg visual/non-visual in standing, the COP maximum anteroposterior displacement, COP anteroposterior velocity, COP radius, and COP area in women are significantly smaller than in men (P 0.05). Women have better real-time balance control ability than men with smart insoles. Conclusions: The simple intelligent wearable assisted devices can immediately increase the control ability in static stance of men and women, and women have better real-time balance control ability than men.
机译:目的:身体通过将来自视力,听力,丙型件和多种感官的中枢神经系统的输入集成来保持稳定性。随着智能可穿戴设备的开发,智能可穿戴设备可以提供实时压力位置辅助平衡控制,有利于保持物理平衡。方法:40名健康大学生(20名男,20名女)参加了这项研究,以及左腿立场的姿势平衡行动非视反馈,左腿立场视觉反馈,右腿立场非视觉反馈,和右腿部立场视觉反馈进行了。视觉反馈提供了匹配平板电脑上的Podoon应用程序的智能鞋垫,其中点的COP位置作为实时视觉反馈。结果:实验结果表明,左腿立场视觉反馈/右腿立场视觉反馈的位移,速度,半径和面积显着下降,测试比较了左腿立场中的参数视觉反馈/右腿立场非智能反馈(P <0.05)。通过智能鞋垫提供视觉反馈可以减少质量中心的运动,并保持对不同性别的健康年轻人的身体稳定性。在静置的一条腿视觉/非视觉上,女性中的COP最大前后移位,COP先向性速度,COP半径和COP面积显着小于男性(P <0.05)。女性具有比具有智能鞋垫的男性更好的实时平衡控制能力。结论:简单的智能可穿戴辅助设备可以立即增加男女静态姿态的控制能力,女性具有比男性更好的实时平衡控制能力。

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