有节奏的振动触觉和听觉生物反馈对体重不对称患者步态的短期影响

Q3 Medicine
Canadian Prosthetics Orthotics Journal Pub Date : 2022-02-07 eCollection Date: 2022-01-01 DOI:10.33137/cpoj.v5i1.36223
A Michelini, H Sivasambu, J Andrysek
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引用次数: 0

摘要

背景:生物反馈(BFB)是一种提供实时感官反馈的方法,已被证明可以改善步态康复效果。通过有节奏的刺激进行生物反馈训练有可能改善步态的时空不对称,同时通过鼓励使用者步态周期与外部节奏的同步将认知负荷降至最低:这项研究的目的是评估节奏刺激能否改善步态时间对称比(STSR),并对振动触觉刺激和听觉刺激进行比较。同时还考察了步态参数,包括速度、步幅、步长、双支撑时间和步长对称性:开发了一套实验性节奏刺激系统,并招募了 12 名健康成年人(5 名男性)参加步行试验,他们的年龄为 28.42 ± 10.93 岁。使用单侧脚踝重物诱导步态不对称,以模拟下肢截肢者和其他临床疾病患者通常表现出的步态不对称。对四种情况进行了评估:1)无踝重基线;2)无节奏刺激的踝重;3)踝重+使用交替电机的节奏振动触觉刺激(RVS);4)踝重+使用单音节拍器的节奏听觉刺激(RAS):不出所料,STSR 在踝关节负重(即诱导不对称条件)的作用下变得更加不对称。与无节奏刺激的踝重相比,RVS 和 RAS 可明显改善 STSR。与无节奏刺激的踝重相比,RVS 和 RAS 也能明显改善步频。除了双支撑时间外,其他步态参数与踝重条件下的步态参数相同。RVS 和 RAS 在统计学上没有显著差异:本研究发现,当引起不对称时,有节奏的刺激可以改善 STSR。此外,在改善诱发步态不对称的健康成年人的 STSR 方面,RVS 至少与听觉刺激一样有效。未来的工作应扩展到有行动障碍的人群和实验室以外的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Short-Term Effects of Rhythmic Vibrotactile and Auditory Biofeedback on the Gait of Individuals After Weight-Induced Asymmetry.

The Short-Term Effects of Rhythmic Vibrotactile and Auditory Biofeedback on the Gait of Individuals After Weight-Induced Asymmetry.

The Short-Term Effects of Rhythmic Vibrotactile and Auditory Biofeedback on the Gait of Individuals After Weight-Induced Asymmetry.

Background: Biofeedback (BFB), the practice of providing real-time sensory feedback has been shown to improve gait rehabilitation outcomes. BFB training through rhythmic stimulation has the potential to improve spatiotemporal gait asymmetries while minimizing cognitive load by encouraging a synchronization between the user's gait cycle and an external rhythm.

Objective: The purpose of this work was to evaluate if rhythmic stimulation can improve the stance time symmetry ratio (STSR) and to compare vibrotactile to auditory stimulation. Gait parameters including velocity, cadence, stride length, double support time, and step length symmetry, were also examined.

Methodology: An experimental rhythmic stimulation system was developed, and twelve healthy adults (5 males), age 28.42 ± 10.93 years, were recruited to participate in walking trials. A unilateral ankle weight was used to induce a gait asymmetry to simulate asymmetry as commonly exhibited by individuals with lower limb amputation and other clinical disorders. Four conditions were evaluated: 1) No ankle weight baseline, 2) ankle weight without rhythmic stimulation, 3) ankle weight + rhythmic vibrotactile stimulation (RVS) using alternating motors and 4) ankle weight + rhythmic auditory stimulation (RAS) using a singletone metronome at the participant's self-selected cadence.

Findings: As expected the STSR became significantly more asymmetrical with the ankle weight (i.e. induced asymmetry condition). STSR improved significantly with RVS and RAS when compared to the ankle weight without rhythmic stimulation. Cadence also significantly improved with RVS and RAS compared to ankle weight without rhythmic stimulation. With the exception of double support time, the other gait parameters were unchanged from the ankle weight condition. There were no statistically significant differences between RVS and RAS.

Conclusion: This study found that rhythmic stimulation can improve the STSR when an asymmetry is induced. Moreover, RVS is at least as effective as auditory stimulation in improving STSR in healthy adults with an induced gait asymmetry. Future work should be extended to populations with mobility impairments and outside of laboratory settings.

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来源期刊
Canadian Prosthetics  Orthotics Journal
Canadian Prosthetics Orthotics Journal Medicine-Rehabilitation
CiteScore
1.00
自引率
0.00%
发文量
9
审稿时长
8 weeks
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