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基于听觉的反馈失真在健康个体中对步态对称性的应用。

Application of an Auditory-Based Feedback Distortion to Modify Gait Symmetry in Healthy Individuals.

作者信息

Liu Le Yu, Sangani Samir, Patterson Kara K, Fung Joyce, Lamontagne Anouk

机构信息

School of Physical and Occupational Therapy, McGill University, Montreal, QC H3G1Y5, Canada.

Feil and Oberfeld Research Centre, Jewish Rehabilitation Hospital Site of CISSS-Laval and Research Site of the Montreal Centre for Interdisciplinary Research in Rehabilitation (CRIR), Laval, QC H7V1R2, Canada.

出版信息

Brain Sci. 2024 Aug 9;14(8):798. doi: 10.3390/brainsci14080798.

Abstract

BACKGROUND

Augmenting auditory feedback through an error-augmentation paradigm could facilitate the perception and correction of gait asymmetry in stroke survivors, but how such a paradigm should be tailored to individual asymmetry profiles remains unclear. Before implementing the paradigm in rehabilitation, we need to investigate the instantaneous effects of distorted footstep sound feedback on gait symmetry in healthy young adults.

METHODS

Participants ( = 12) walked on a self-paced treadmill while listening to their footstep sounds, which were distorted unilaterally according to five conditions presented randomly: small delay; small advance; large delay; large advance; or unmodified (control). The primary outcomes were swing time ratio (SWR) and step length ratio (SLR). Secondary outcomes included walking speed, bilateral swing time, step length, and maximum toe height, as well as hip, knee, and ankle angle excursions.

RESULTS

SWR ( < 0.001) but not SLR ( ≥ 0.05) was increased in all distorted feedback conditions compared to the control condition. Increased swing time on the perturbed side ipsilateral to feedback distortion was observed in the advanced conditions ( < 0.001), while swing time increased bilaterally in the delayed conditions ( < 0.001) but to a larger extent on the unperturbed side contralateral to feedback distortion. Increases in swing time were accompanied by larger maximum toe height as well as larger hip and knee joint excursions ( < 0.05 to < 0.001). No differences in any outcomes were observed between small and large feedback distortion magnitudes.

CONCLUSIONS

Distorted footstep sound feedback successfully elicits adaptation in temporal gait symmetry (SWR), with distinct modulation patterns for advanced vs. delayed footstep sounds. Spatial symmetry (SLR) remains unaltered, likely because auditory feedback primarily conveys temporal information. This research lays the groundwork to implement personalized augmented auditory feedback in neurorehabilitation.

摘要

背景

通过错误增强范式增强听觉反馈可促进中风幸存者对步态不对称的感知和纠正,但这种范式应如何根据个体不对称特征进行调整仍不明确。在将该范式应用于康复之前,我们需要研究失真的脚步声反馈对健康年轻成年人步态对称性的即时影响。

方法

12名参与者在自定速度的跑步机上行走,同时聆听他们的脚步声,脚步声根据随机呈现的五种情况单侧失真:小延迟;小提前;大延迟;大提前;或未修改(对照)。主要结果是摆动时间比(SWR)和步长比(SLR)。次要结果包括步行速度、双侧摆动时间、步长、最大趾高,以及髋、膝和踝关节的活动范围。

结果

与对照条件相比,在所有失真反馈条件下,SWR(P<0.001)增加,但SLR(P≥0.05)未增加。在提前条件下(P<0.001),观察到与反馈失真同侧的受干扰侧摆动时间增加,而在延迟条件下(P<0.001)双侧摆动时间增加,但在与反馈失真对侧的未受干扰侧增加幅度更大。摆动时间的增加伴随着更大的最大趾高以及更大的髋和膝关节活动范围(P<0.05至P<0.001)。在小反馈失真幅度和大反馈失真幅度之间,未观察到任何结果的差异。

结论

失真的脚步声反馈成功地引起了步态时间对称性(SWR)的适应性变化,对于提前和延迟的脚步声有不同的调节模式。空间对称性(SLR)保持不变,可能是因为听觉反馈主要传达时间信息。这项研究为在神经康复中实施个性化增强听觉反馈奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3490/11352473/597c9e9dd5ce/brainsci-14-00798-g001.jpg

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