Department of Physical Education, Seoul National University, Seoul, Republic of Korea.
Robot Center in Samsung Seoul R&D Campus, Samsung Electronics Co., Ltd., Seoul, Republic of Korea.
PLoS One. 2022 Jan 4;17(1):e0261732. doi: 10.1371/journal.pone.0261732. eCollection 2022.
Minimum toe clearance (MTC) is an important indicator of the risk of tripping. Aging and neuromuscular diseases often decrease MTC height and increase its variability, leading to a higher risk of tripping. Previous studies have developed visual feedback-based gait training systems to modify MTC. However, these systems are bulky and expensive, and the effects of the training continue only for a short time. We paid attention to the efficacy of vibration in decreasing the variability of gait parameters, and hypothesized that proper vibration applied to soles can reduce the MTC variability. Using shoes embedded with active vibrating insoles, we assessed the efficacy of both sub- and supra-threshold vibration in affecting MTC distribution. Experiment results with 17 young and healthy adults showed that vibration applied throughout the walking task with constant intensity of 130% of sensory threshold significantly decreased MTC variability, whereas sub-threshold vibration yielded no significant effect. These results demonstrate that a properly designed tactile sensory input which is controlled and delivered by a simple wearable device, the active insole, can reduce the MTC variability during walking.
最小脚趾间隙(MTC)是绊倒风险的一个重要指标。衰老和神经肌肉疾病通常会降低 MTC 高度并增加其可变性,从而导致更高的绊倒风险。以前的研究已经开发出基于视觉反馈的步态训练系统来改变 MTC。然而,这些系统庞大且昂贵,并且训练效果仅持续很短的时间。我们关注到振动在降低步态参数可变性方面的功效,并假设适当的鞋底振动可以降低 MTC 的可变性。我们使用嵌入有源振动鞋垫的鞋子来评估次阈值和超阈值振动对 MTC 分布的影响。对 17 名年轻健康成年人的实验结果表明,在整个行走任务中以 130%感觉阈值的恒定强度应用振动显著降低了 MTC 的可变性,而次阈值振动则没有显著效果。这些结果表明,通过简单的可穿戴设备(有源鞋垫)控制和传递的适当设计的触觉感觉输入可以降低行走过程中的 MTC 可变性。