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Neural mechanisms of training an auditory event-related potential task in a brain-computer interface context

机译:在脑部界面上下文中培训听觉事件相关潜在任务的神经机制

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摘要

Effective use of brain-computer interfaces (BCIs) typically requires training. Improved understanding of the neural mechanisms underlying BCI training will facilitate optimisation of BCIs. The current study examined the neural mechanisms related to training for electroencephalography (EEG)-based communication with an auditory event-related potential (ERP) BCI. Neural mechanisms of training in 10 healthy volunteers were assessed with functional magnetic resonance imaging (fMRI) during an auditory ERP-based BCI task before (t1) and after (t5) three ERP-BCI training sessions outside the fMRI scanner (t2, t3, and t4). Attended stimuli were contrasted with ignored stimuli in the first-level fMRI data analysis (t1 and t5); the training effect was verified using the EEG data (t2-t4); and brain activation was contrasted before and after training in the second-level fMRI data analysis (t1 vs. t5). Training increased the communication speed from 2.9 bits/min (t2) to 4 bits/min (t4). Strong activation was found in the putamen, supplementary motor area (SMA), and superior temporal gyrus (STG) associated with attention to the stimuli. Training led to decreased activation in the superior frontal gyrus and stronger haemodynamic rebound in the STG and supramarginal gyrus. The neural mechanisms of ERP-BCI training indicate improved stimulus perception and reduced mental workload. The ERP task used in the current study showed overlapping activations with a motor imagery based BCI task from a previous study on the neural mechanisms of BCI training in the SMA and putamen. This suggests commonalities between the neural mechanisms of training for both BCI paradigms.
机译:有效使用脑电脑接口(BCI)通常需要培训。改善了对BCI培训的神经机制的理解将促进BCI的优化。目前的研究检测了与脑电图(EEG)训练相关的神经机制 - 基于与听觉事件相关的潜在(ERP)BCI的通信。在FMRI扫描仪外部(T2,T3之外的三个ERP-BCI训练课程(T2,T3,和t4)。参与刺激与第一级FMRI数据分析(T1和T5)的忽略刺激形成鲜明对比;使用EEG数据(T2-T4)验证训练效果;在第二级FMRI数据分析中训练之前和之后,脑激活和脑激活对比(T1 Vs.T5)。训练将通信速度从2.9位/ min(t2)增加到4位/ min(t4)。在与注意刺激相关的浮子,补充电动机面积(SMA)和优越的颞克鲁斯(STG)中发现了强烈的活化。培训导致在STG和穗敷过上的卓越额相回归和更强的血液动力学反弹中减少。 ERP-BCI训练的神经机制表明改善了刺激感知和减少心理工作量。目前研究中使用的ERP任务显示了基于Motor Imagery的BCI任务的重叠激活,从先前的SMA和Butamen中的BCI培训神经机制研究。这表明BCI范式训练的神经机制之间的共同点。

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