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首页> 外文期刊>Frontiers in Medicine >Haptic-Based Perception-Empathy Biofeedback Enhances Postural Motor Learning During High-Cognitive Load Task in Healthy Older Adults
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Haptic-Based Perception-Empathy Biofeedback Enhances Postural Motor Learning During High-Cognitive Load Task in Healthy Older Adults

机译:基于触觉的感知-全能生物反馈增强健康老年人在高认知负荷任务期间的姿势运动学习

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摘要

Falls and fall-induced injuries are major global public health problems, and sensory input impairment in older adults results in significant limitations in feedback-type postural control. A haptic-based biofeedback (BF) system can be used for augmenting somatosensory input in older adults, and the application of this BF system can increase the objectivity of the feedback and encourage comparison with that provided by a trainer. Nevertheless, an optimal BF system that focuses on interpersonal feedback for balance training in older adults has not been proposed. Thus, we proposed a haptic-based perception-empathy BF system that provides information regarding the older adult's center-of-foot pressure pattern to the trainee and trainer for refining the motor learning effect. The first objective of this study was to examine the effect of this balance training regimen in healthy older adults performing a postural learning task. Second, this study aimed to determine whether BF training required high cognitive load to clarify its practicability in real-life settings. Twenty older adults were assigned to two groups: BF and control groups. Participants in both groups tried balance training in the single-leg stance while performing a cognitive task (i.e., serial subtraction task). Retention was tested 24 h later. Testing comprised balance performance measures (i.e., 95% confidence ellipse area and mean velocity of sway) and dual-task performance (number of responses and correct answers). Measurements of postural control using a force plate revealed that the stability of the single-leg stance was significantly lower in the BF group than in the control group during the balance task. The BF group retained the improvement in the 95% confidence ellipse area 24 h after the retention test. Results of dual-task performance during the balance task were not different between the two groups. These results confirmed the potential benefit of the proposed balance training regimen in designing successful motor learning programs for preventing falls in older adults.
机译:跌倒和跌倒造成的伤害是全球主要的公共卫生问题,老年人的感觉输入障碍导致反馈型姿势控制的显着局限。基于触觉的生物反馈(BF)系统可以用于增加老年人的体感输入,并且该BF系统的应用可以提高反馈的客观性并鼓励与培训者提供的反馈进行比较。然而,尚未提出针对老年人平衡训练的最佳人际交往系统。因此,我们提出了一种基于触觉的感知-共情BF系统,该系统向受训者和教练提供有关老年人的脚重心压力模式的信息,以改善运动学习效果。这项研究的第一个目标是检查这种平衡训练方案对健康的成年人执行姿势学习任务的效果。其次,本研究旨在确定高炉训练是否需要较高的认知负荷,以阐明其在现实生活中的实用性。 20名老年人分为两组:高炉和对照组。两组参与者都在执行认知任务(即连续减法任务)时尝试了单腿姿势的平衡训练。 24小时后测试保留力。测试包括平衡表现指标(即95%置信椭圆面积和平均摇摆速度)和双重任务表现(响应数量和正确答案)。使用测力板的姿势控制测量结果表明,在平衡任务期间,BF组的单腿姿势稳定性明显低于对照组。保留测试后24小时,BF组保留了95%置信椭圆区域的改善。两组之间平衡任务期间双重任务性能的结果没有差异。这些结果证实了拟议的平衡训练方案在设计成功的运动学习计划以防止老年人摔倒中的潜在益处。

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