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Closing the sensorimotor loop: Haptic feedback facilitates decoding of arm movement imagery

机译:闭合感觉运动回路:触觉反馈有助于手臂运动图像的解码

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Brain-Computer Interfaces (BCIs) in combination with robot-assisted physical therapy may become a valuable tool for neurorehabilitation of patients with severe hemiparetic syndromes due to cerebrovascular brain damage (stroke) and other neurological conditions. A key aspect of this approach is reestablishing the disrupted sensorimotor feedback loop, i.e., determining the intended movement using a BCI and helping a human with impaired motor function to move the arm using a robot. It has not been studied yet, however, how artificially closing the sensorimotor feedback loop affects the BCI decoding performance. In this article, we investigate this issue in six healthy subjects, and present evidence that haptic feedback facilitates the decoding of arm movement intention. The results provide evidence of the feasibility of future rehabilitative efforts combining robot-assisted physical therapy with BCIs. Moreover, the results suggest that shared-control strategies in Brain-Machine Interfaces (BMIs) may benefit from haptic feedback.
机译:脑机接口(BCI)结合机器人辅助的物理疗法可能会成为因脑血管性脑损伤(中风)和其他神经系统疾病而导致的严重偏瘫综合征患者进行神经康复的有价值的工具。该方法的关键方面是重新建立中断的感觉运动反馈回路,即,使用BCI确定预期的运动,并使用机器人帮助运动功能受损的人移动手臂。但是,还没有人为地关闭感觉运动反馈回路如何影响BCI解码性能的研究。在本文中,我们在六个健康受试者中调查了此​​问题,并提供了触觉反馈有助于手臂运动意图解码的证据。结果提供了结合机器人辅助物理治疗和BCI进行未来康复工作的可行性的证据。此外,结果表明,脑机接口(BMI)中的共享控制策略可能会受益于触觉反馈。

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