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Classification of Articulator Movements and Movement Direction from Sensorimotor Cortex Activity

机译:感觉运动皮层活动对发音器运动和运动方向的分类

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摘要

For people suffering from severe paralysis, communication can be difficult or nearly impossible. Technology systems called brain-computer interfaces (BCIs) are being developed to assist these people with communication by using their brain activity to control a computer without any muscle activity. To benefit the development of BCIs that employ neural activity related to speech, we investigated if neural activity patterns related to different articulator movements can be distinguished from each other. We recorded with electrocorticography (ECoG), the neural activity related to different articulator movements in 4 epilepsy patients and classified which articulator participants moved based on the sensorimotor cortex activity patterns. The same was done for different movement directions of a single articulator, the tongue. In both experiments highly accurate classification was obtained, on average 92% for different articulators and 85% for different tongue directions. Furthermore, the data show that only a small part of the sensorimotor cortex is needed for classification (ca. 1 cm2). We show that recordings from small parts of the sensorimotor cortex contain information about different articulator movements which might be used for BCI control. Our results are of interest for BCI systems that aim to decode neural activity related to (actual or attempted) movements from a contained cortical area.
机译:对于遭受严重瘫痪的人来说,沟通可能非常困难或几乎不可能。正在开发称为脑机接口(BCI)的技术系统,以帮助他们进行交流,方法是利用他们的大脑活动来控制计算机,而无需进行任何肌肉活动。为了促进采用与语音相关的神经活动的BCI的发展,我们研究了是否可以将与不同发音器运动相关的神经活动模式区分开。我们用电皮质描记法(ECoG)记录了4名癫痫患者与不同咬合架运动相关的神经活动,并根据感觉运动皮层活动模式分类了哪些咬合架参与者移动了。对于单个咬合器(舌头)的不同运动方向也进行了相同的操作。在这两个实验中,均获得了高度准确的分类,对于不同的咬合架平均为92%,对于不同的舌头方向则为85%。此外,数据显示仅需要感觉运动皮层的一小部分进行分类(大约1cacm 2 )。我们显示,感觉运动皮层的小部分记录包含有关不同咬合架运动的信息,这些信息可用于BCI控制。我们的结果对于BCI系统感兴趣,该系统旨在解码与来自某个皮层区域的(实际或尝试的)运动有关的神经活动。

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