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采用领导者-跟随者模式的神经调节和外骨骼对运动性能的研究:一项 tDCS 研究。

Investigations of motor performance with neuromodulation and exoskeleton using leader-follower modality: a tDCS study.

机构信息

Department of Mechanical Engineering, Middle East Technical University, Ankara, Türkiye.

Neuroscience and Neurotechnology Center of Excellence (NÖROM), Ankara, Türkiye.

出版信息

Exp Brain Res. 2024 Dec;242(12):2677-2689. doi: 10.1007/s00221-024-06938-0. Epub 2024 Oct 4.

Abstract

This study investigates how the combination of robot-mediated haptic interaction and cerebellar neuromodulation can improve task performance and promote motor skill development in healthy individuals using a robotic exoskeleton worn on the index finger. The authors propose a leader-follower type of mirror game where participants can follow a leader in a two-dimensional virtual reality environment while the exoskeleton tracks the index finger motion using an admittance filter. The game requires two primary learning phases: the initial phase focuses on mastering the pinching interface, while the second phase centers on predicting the leader's movements. Cerebral transcranial direct current stimulation (tDCS) with anodal polarity is applied to the subjects during the game. It is shown that the subjects' performance improves as they play the game. The combination of tDCS with finger exoskeleton significantly enhances task performance. Our research indicates that modulation of the cerebellum during the mirror game improves the motor skills of healthy individuals. The results also indicate potential uses for motor neurorehabilitation in hemiplegia patients.

摘要

本研究旨在探讨机器人介导的触觉交互和小脑神经调节相结合如何通过佩戴在食指上的机器人外骨骼来提高健康个体的任务表现和促进运动技能发展。作者提出了一种领导者-跟随者类型的镜像游戏,参与者可以在二维虚拟现实环境中跟随领导者,而外骨骼使用导纳滤波器跟踪食指运动。游戏需要两个主要的学习阶段:初始阶段专注于掌握捏合界面,而第二阶段则侧重于预测领导者的动作。在游戏过程中,对受试者进行阳极经颅直流电刺激 (tDCS)。结果表明,随着游戏的进行,受试者的表现有所提高。tDCS 与手指外骨骼的结合显著提高了任务表现。我们的研究表明,在镜像游戏期间对小脑进行调制可以提高健康个体的运动技能。研究结果还表明,该方法在偏瘫患者的运动神经康复中具有潜在的应用价值。

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