首页> 美国卫生研究院文献>Frontiers in Neuroscience >Factors of Influence on the Performance of a Short-Latency Non-Invasive Brain Switch: Evidence in Healthy Individuals and Implication for Motor Function Rehabilitation
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Factors of Influence on the Performance of a Short-Latency Non-Invasive Brain Switch: Evidence in Healthy Individuals and Implication for Motor Function Rehabilitation

机译:影响短时无创脑开关性能的因素:健康个体的证据及其对运动功能康复的影响

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摘要

Brain-computer interfacing (BCI) has recently been applied as a rehabilitation approach for patients with motor disorders, such as stroke. In these closed-loop applications, a brain switch detects the motor intention from brain signals, e.g., scalp EEG, and triggers a neuroprosthetic device, either to deliver sensory feedback or to mimic real movements, thus re-establishing the compromised sensory-motor control loop and promoting neural plasticity. In this context, single trial detection of motor intention with short latency is a prerequisite. The performance of the event detection from EEG recordings is mainly determined by three factors: the type of motor imagery (e.g., repetitive, ballistic), the frequency band (or signal modality) used for discrimination (e.g., alpha, beta, gamma, and MRCP, i.e., movement-related cortical potential), and the processing technique (e.g., time-series analysis, sub-band power estimation). In this study, we investigated single trial EEG traces during movement imagination on healthy individuals, and provided a comprehensive analysis of the performance of a short-latency brain switch when varying these three factors. The morphological investigation showed a cross-subject consistency of a prolonged negative phase in MRCP, and a delayed beta rebound in sensory-motor rhythms during repetitive tasks. The detection performance had the greatest accuracy when using ballistic MRCP with time-series analysis. In this case, the true positive rate (TPR) was ~70% for a detection latency of ~200 ms. The results presented here are of practical relevance for designing BCI systems for motor function rehabilitation.
机译:脑计算机接口(BCI)最近已被用作针对运动障碍(例如中风)的患者的康复方法。在这些闭环应用中,大脑开关从大脑信号(例如头皮脑电图)中检测运动意图,并触发神经修复设备,以提供感觉反馈或模仿真实运动,从而重新建立受损的感觉运动控制循环并促进神经可塑性。在这种情况下,必须先进行具有短等待时间的运动意图的单次试验检测。 EEG记录中事件检测的性能主要取决于三个因素:运动图像的类型(例如重复,弹道),用于区分的频带(或信号模态)(例如alpha,beta,gamma和MRCP,即与运动有关的皮层电势)和处理技术(例如,时间序列分析,子带功率估计)。在这项研究中,我们调查了健康个体在运动想象过程中的单次EEG踪迹,并在改变这三个因素时对短时脑开关的性能进行了全面分析。形态学研究显示,在重复性任务中,MRCP的负相延长,跨科目一致性强,感觉运动节律的β反弹延迟。当将弹道MRCP与时间序列分析一起使用时,检测性能具有最高的准确性。在这种情况下,检测潜伏期约为200毫秒,真实阳性率(TPR)约为70%。此处介绍的结果与设计用于运动功能康复的BCI系统具有实际意义。

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