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一种基于运动步态参数的新型振动触觉线索用于减轻帕金森病患者步态冻结:一项初步研究。

A Novel Kinematic Gait Parameter-Based Vibrotactile Cue for Freezing of Gait Mitigation Among Parkinson's Patients: A Pilot Study.

作者信息

Khatavkar Rohan, Tiwari Ashutosh, Bhat Priyanka, Srivastava Achal Kumar, Kumaran S Senthil, Joshi Deepak

出版信息

IEEE Trans Haptics. 2024 Oct-Dec;17(4):689-704. doi: 10.1109/TOH.2024.3378917. Epub 2024 Dec 19.

Abstract

Auditory and visual cues have been efficacious in laboratory-based freezing of gait (FoG) mitigation in Parkinson's disease (PD). However, real-life applications of these cues are restricted due to inconvenience to the users. Closed-loop vibrotactile cues based on temporal gait events have overcome the shortcomings of auditory and visual cueing. However, kinematic gait parameter-driven vibrotactile cueing has not been explored yet. Kinematic gait parameter-driven cueing is more effective than temporal cueing, according to FoG pathophysiology studies. Therefore, we developed and pilot-tested a novel cueing scheme in which the foot-to-ground angle at heel strike (FGA_HS) is estimated using indigenous instrumented shoes to drive vibrotactile cueing. Ten PD freezers underwent a 6-meter timed walk test in the off-medication state with and without the cue and after medication without the cue. The proposed system potentially mitigated FoG, quantified by a reduction in the ratio of time spent freezing to the total walking time and the number of FoGs. The FoG mitigation potential of the cue was further supported by increased anteroposterior center of pressure progression and FGA_HS. With a future comprehensive validation in a larger number of participants, the novel cue could likely be used in practice and commercialized.

摘要

听觉和视觉提示在帕金森病(PD)基于实验室的步态冻结(FoG)缓解中已被证明有效。然而,由于对用户不便,这些提示在现实生活中的应用受到限制。基于时间步态事件的闭环振动触觉提示克服了听觉和视觉提示的缺点。然而,运动步态参数驱动的振动触觉提示尚未得到探索。根据FoG病理生理学研究,运动步态参数驱动的提示比时间提示更有效。因此,我们开发并进行了初步测试一种新颖的提示方案,其中使用本地仪器鞋估计脚跟撞击时的脚对地角度(FGA_HS)来驱动振动触觉提示。十名PD冻结患者在未服药状态下进行了6米定时步行测试,分别在有提示和无提示的情况下,以及服药后无提示的情况下。所提出的系统有可能减轻FoG,通过减少冻结时间与总步行时间的比率以及FoG的数量来量化。提示对FoG的缓解潜力进一步得到前后压力中心进展和FGA_HS增加的支持。随着未来在更多参与者中进行全面验证,这种新颖的提示可能会在实践中使用并商业化。

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