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一种用于视觉皮层接口的多通道、软硬结合的脑皮层电图微电极阵列。

A multi-channel, flex-rigid ECoG microelectrode array for visual cortical interfacing.

作者信息

Tolstosheeva Elena, Gordillo-González Víctor, Biefeld Volker, Kempen Ludger, Mandon Sunita, Kreiter Andreas K, Lang Walter

机构信息

Institute for Microsensors, Actuators and Systems (IMSAS), Microsystems Center Bremen (MCB), University of Bremen, Bremen 28359, Germany.

Institute for Brain Research, Center for Cognitive Sciences, University of Bremen, Bremen 28359, Germany.

出版信息

Sensors (Basel). 2015 Jan 6;15(1):832-54. doi: 10.3390/s150100832.

Abstract

High-density electrocortical (ECoG) microelectrode arrays are promising signal-acquisition platforms for brain-computer interfaces envisioned, e.g., as high-performance communication solutions for paralyzed persons. We propose a multi-channel microelectrode array capable of recording ECoG field potentials with high spatial resolution. The proposed array is of a 150 mm2 total recording area; it has 124 circular electrodes (100, 300 and 500 µm in diameter) situated on the edges of concentric hexagons (min. 0.8 mm interdistance) and a skull-facing reference electrode (2.5 mm2 surface area). The array is processed as a free-standing device to enable monolithic integration of a rigid interposer, designed for soldering of fine-pitch SMD-connectors on a minimal assembly area. Electrochemical characterization revealed distinct impedance spectral bands for the 100, 300 and 500 µm-type electrodes, and for the array's own reference. Epidural recordings from the primary visual cortex (V1) of an awake Rhesus macaque showed natural electrophysiological signals and clear responses to standard visual stimulation. The ECoG electrodes of larger surface area recorded signals with greater spectral power in the gamma band, while the skull-facing reference electrode provided higher average gamma power spectral density (γPSD) than the common average referencing technique.

摘要

高密度皮层脑电图(ECoG)微电极阵列是用于脑机接口的很有前景的信号采集平台,例如可作为瘫痪患者的高性能通信解决方案。我们提出了一种能够以高空间分辨率记录ECoG场电位的多通道微电极阵列。所提出的阵列总记录面积为150平方毫米;它有124个圆形电极(直径分别为100、300和500微米)位于同心六边形的边缘(最小间距为0.8毫米)以及一个面向颅骨的参考电极(表面积为2.5平方毫米)。该阵列被加工成独立器件,以便能够对刚性中介层进行单片集成,该中介层设计用于在最小组装面积上焊接细间距贴片式连接器。电化学特性揭示了100、300和500微米类型电极以及阵列自身参考电极的不同阻抗谱带。对一只清醒恒河猴初级视觉皮层(V1)的硬膜外记录显示了自然电生理信号以及对标准视觉刺激的清晰反应。表面积较大的ECoG电极在伽马波段记录到具有更高频谱功率的信号,而面向颅骨的参考电极比普通平均参考技术提供了更高的平均伽马功率谱密度(γPSD)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f672/4327052/75d17840720b/sensors-15-00832f1.jpg

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