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Using a Vibrotactile Biofeedback Device to Augment Foot Pressure During Walking in Healthy Older Adults: A Brief Report

机译:使用振动触作生物融合装置在锻炼身体上的健康老年人期间增加脚压:简要报道

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摘要

Human movement based on sensory control is significant to motor task performance. Thus, impairments to sensory input significantly limit feedback-type motor control. The present study introduces a vibrotactile biofeedback (BF) system which augments information regarding the user’s foot pressure to enhance gait performance. The effects of the proposed system on the gait patterns of healthy older adults and on the cognitive load during gait were evaluated; these factors are essential to clarify feasibility of the device in real-life settings. The primary task of our study was to evaluate gait along with a cognitively demanding activity in 10 healthy older adults. Regarding kinematic and kinetic data in the BF condition, the subjects had significantly increased ankle dorsiflexion during the heel contact phase in the sagittal plane and marginally increased foot pressure at the toe-off and stride length. However, such kinematic and kinetic changes were not attributed to the increased walking speed. In addition, cognitive performance (i.e., the number of correct answers) was significantly decreased in participants during gait measurements in the BF condition. These data suggest that the system had the potential for modifying the kinematic and kinetic patterns during walking but not the more comprehensive walking performance in older adults. Moreover, the device appears to place a cognitive load on older adults. This short report provides crucial primary data that would help in designing successful sensory augmentation devices and further research on a BF system.
机译:基于感官控制的人体运动对电机任务性能具有重要意义。因此,对感觉输入的损伤显着限制了反馈型电机控制。本研究介绍了一种振动触觉生物反馈(BF)系统,其增加了关于用户的脚压的信息,以提高步态性能。评估了所提出的系统对健康老年人步态模式的影响及步态期间的认知载荷;这些因素对于在现实生活中阐明设备的可行性至关重要。我们的研究的主要任务是评估步态以及10名健康老年人的认知苛刻的活动。关于BF条件中的运动和动力学数据,受试者在矢状平面的后跟接触阶段期间具有显着增加的脚踝背离,并且在饲料上的脚趾和升高长度处的脚压率略微增加。然而,这种运动和动力学变化不会归因于增加的步行速度。此外,参与者在BF条件下的步态测量期间,参与者在参与者中显着降低了认知性能(即,正确答案的数量)。这些数据表明,该系统在步行期间具有修改运动和动力学模式的可能性,而不是更全面的成年人的常识性能。此外,该装置似乎对老年人的认知负荷施加。此简短报告提供了关键的主要数据,可以帮助设计成功的感官增强设备以及对BF系统的进一步研究。

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