School of Engineering and the Advanced Engineering Platform, Monash University, Selangor, Malaysia.
Malaysian Research Institute on Ageing, Universiti Putra Malaysia, Selangor, Malaysia.
Sci Rep. 2021 Jun 10;11(1):12276. doi: 10.1038/s41598-021-91422-w.
Although the application of sub-sensory mechanical noise to the soles of the feet has been shown to enhance balance, there has been no study on how the bandwidth of the noise affects balance. Here, we report a single-blind randomized controlled study on the effects of a narrow and wide bandwidth mechanical noise on healthy young subjects' sway during quiet standing on firm and compliant surfaces. For the firm surface, there was no improvement in balance for both bandwidths-this may be because the young subjects could already balance near-optimally or optimally on the surface by themselves. For the compliant surface, balance improved with the introduction of wide but not narrow bandwidth noise, and balance is improved for wide compared to narrow bandwidth noise. This could be explained using a simple model, which suggests that adding noise to a sub-threshold pressure stimulus results in markedly different frequency of nerve impulse transmitted to the brain for the narrow and wide bandwidth noise-the frequency is negligible for the former but significantly higher for the latter. Our results suggest that if a person's standing balance is not optimal (for example, due to aging), it could be improved by applying a wide bandwidth noise to the feet.
虽然已经证明足底亚感知机械噪声的应用可以增强平衡能力,但目前还没有研究表明噪声的带宽如何影响平衡。在这里,我们报告了一项针对健康年轻受试者在坚硬和柔软表面上安静站立时身体摆动的单盲随机对照研究,研究了窄带和宽带机械噪声对其平衡的影响。对于坚硬表面,两种带宽的平衡都没有改善-这可能是因为年轻受试者本身已经可以在表面上接近最佳或最佳地平衡。对于柔软表面,引入宽带而不是窄带噪声会改善平衡,并且与窄带噪声相比,宽带噪声会改善平衡。这可以用一个简单的模型来解释,该模型表明,将噪声添加到亚阈值压力刺激中会导致向大脑传输的神经冲动的频率对于窄带和宽带噪声有明显不同-对于前者,频率可以忽略不计,但对于后者,则显著更高。我们的结果表明,如果一个人的站立平衡不是最佳的(例如,由于年龄增长),那么通过将宽带噪声应用于脚部,可以改善其平衡。