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Balance Improvement Effects of Biofeedback Systems with State-of-the-Art Wearable Sensors: A Systematic Review

机译:具有最新型可穿戴传感器的生物反馈系统的平衡改善效果:系统评价

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Falls and fall-induced injuries are major global public health problems. Balance and gait disorders have been the second leading cause of falls. Inertial motion sensors and force sensors have been widely used to monitor both static and dynamic balance performance. Based on the detected performance, instant visual, auditory, electrotactile and vibrotactile biofeedback could be provided to augment the somatosensory input and enhance balance control. This review aims to synthesize the research examining the effect of biofeedback systems, with wearable inertial motion sensors and force sensors, on balance performance. Randomized and non-randomized clinical trials were included in this review. All studies were evaluated based on the methodological quality. Sample characteristics, device design and study characteristics were summarized. Most previous studies suggested that biofeedback devices were effective in enhancing static and dynamic balance in healthy young and older adults, and patients with balance and gait disorders. Attention should be paid to the choice of appropriate types of sensors and biofeedback for different intended purposes. Maximizing the computing capacity of the micro-processer, while minimizing the size of the electronic components, appears to be the future direction of optimizing the devices. Wearable balance-improving devices have their potential of serving as balance aids in daily life, which can be used indoors and outdoors.
机译:跌倒和跌倒造成的伤害是全球主要的公共卫生问题。平衡和步态障碍是跌倒的第二个主要原因。惯性运动传感器和力传感器已广泛用于监视静态和动态平衡性能。根据检测到的性能,可以提供即时的视觉,听觉,触觉和触觉生物反馈,以增强体感输入并增强平衡控制。本综述旨在综合研究可穿戴式惯性运动传感器和力传感器对生物反馈系统对平衡性能的影响。本评价包括随机和非随机临床试验。所有研究均根据方法学质量进行评估。总结了样品特性,器件设计和研究特性。以前的大多数研究表明,生物反馈设备可有效增强健康的年轻人和老年人以及患有平衡和步态障碍的患者的静态和动态平衡。应注意针对不同的预期目的选择合适类型的传感器和生物反馈。最大化微处理机的计算能力,同时最小化电子组件的尺寸,似乎是优化设备的未来方向。可穿戴的平衡改善设备具有在日常生活中用作平衡辅助设备的潜力,可以在室内和室外使用。

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