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机器人辅助多感官交互式运动康复训练期间的认知和运动皮层激活:一项基于功能近红外光谱技术的初步研究。

Cognitive and motor cortex activation during robot-assisted multi-sensory interactive motor rehabilitation training: An fNIRS based pilot study.

作者信息

Zheng Jinyu, Ma Qiqi, He Wanying, Huang Yanping, Shi Ping, Li Sujiao, Yu Hongliu

机构信息

Institute of Rehabilitation Engineering and Technology, University of Shanghai for Science and Technology, Shanghai, China.

Shanghai Engineering Research Center of Assistive Devices, Shanghai, China.

出版信息

Front Hum Neurosci. 2023 Feb 9;17:1089276. doi: 10.3389/fnhum.2023.1089276. eCollection 2023.

Abstract

OBJECTIVE

This study aimed to evaluate the effects of multiple virtual reality (VR) interaction modalities based on force-haptic feedback combined with visual or auditory feedback in different ways on cerebral cortical activation by functional near-infrared spectroscopy (fNIRS). Methods: A modular multi-sensory VR interaction system based on a planar upper-limb rehabilitation robot was developed. Twenty healthy participants completed active elbow flexion and extension training in four VR interaction patterns, including haptic (H), haptic + auditory (HA), haptic + visual (HV), and haptic + visual + auditory (HVA). Cortical activation changes in the sensorimotor cortex (SMC), premotor cortex (PMC), and prefrontal cortex (PFC) were measured.

RESULTS

Four interaction patterns all had significant activation effects on the motor and cognitive regions of the cerebral cortex ( < 0.05). Among them, in the HVA interaction mode, the cortical activation of each ROI was the strongest, followed by HV, HA, and H. The connectivity between channels of SMC and bilateral PFC, as well as the connectivity between channels in PMC, was the strongest under HVA and HV conditions. Besides, the two-way ANOVA of visual and auditory feedback showed that it was difficult for auditory feedback to have a strong impact on activation without visual feedback. In addition, under the condition of visual feedback, the effect of fusion auditory feedback on the activation degree was significantly higher than that of no auditory feedback.

CONCLUSIONS

The interaction mode of visual, auditory, and haptic multi-sensory integration is conducive to stronger cortical activation and cognitive control. Besides, there is an interaction effect between visual and auditory feedback, thus improving the cortical activation level. This research enriches the research on activation and connectivity of cognitive and motor cortex in the process of modular multi-sensory interaction training of rehabilitation robots. These conclusions provide a theoretical basis for the optimal design of the interaction mode of the rehabilitation robot and the possible scheme of clinical VR rehabilitation.

摘要

目的

本研究旨在通过功能近红外光谱技术(fNIRS)评估基于力触觉反馈并以不同方式结合视觉或听觉反馈的多种虚拟现实(VR)交互模式对大脑皮层激活的影响。方法:开发了一种基于平面上肢康复机器人的模块化多感官VR交互系统。20名健康参与者以四种VR交互模式完成主动肘关节屈伸训练,包括触觉(H)、触觉+听觉(HA)、触觉+视觉(HV)和触觉+视觉+听觉(HVA)。测量感觉运动皮层(SMC)、运动前区皮层(PMC)和前额叶皮层(PFC)的皮层激活变化。

结果

四种交互模式均对大脑皮层的运动和认知区域有显著激活作用(<0.05)。其中,在HVA交互模式下,各感兴趣区域(ROI)的皮层激活最强,其次是HV、HA和H。在HVA和HV条件下,SMC与双侧PFC通道之间以及PMC通道之间的连通性最强。此外,视觉和听觉反馈的双向方差分析表明,在没有视觉反馈的情况下,听觉反馈很难产生强烈的激活影响。另外,在视觉反馈条件下,融合听觉反馈对激活程度的影响显著高于无听觉反馈。

结论

视觉、听觉和触觉多感官整合的交互模式有利于更强的皮层激活和认知控制。此外,视觉和听觉反馈之间存在交互作用从而提高了皮层激活水平。本研究丰富了康复机器人模块化多感官交互训练过程中认知和运动皮层激活及连通性的研究。这些结论为康复机器人交互模式的优化设计及临床VR康复的可能方案提供了理论依据。

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