Optogenetic micro-electrocorticography for modulating and localizing cerebral cortex activity

光遗传微皮层电图用于调节和定位大脑皮层活动

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作者:Thomas J Richner, Sanitta Thongpang, Sarah K Brodnick, Amelia A Schendel, Ryan W Falk, Lisa A Krugner-Higby, Ramin Pashaie, Justin C Williams

Objective

Spatial localization of neural activity from within the brain with electrocorticography (ECoG) and electroencephalography remains a challenge in clinical and research settings, and while microfabricated ECoG (micro-ECoG) array technology continues to improve, complementary

Results

Negative potentials of up to 1.5 mV were evoked by photostimuli applied to the entire cortical window, while focally applied photostimuli evoked spatially localized micro-ECoG potentials. Two simultaneously applied focal stimuli could be separated, depending on the distance between them. Photostimuli applied within the cortex with an optical fiber evoked more complex micro-ECoG potentials with multiple positive and negative peaks whose relative amplitudes depended on the depth of the fiber. Significance: Optogenetic ECoG has potential applications in the study of epilepsy, cortical dynamics, and neuroprostheses.

Significance

Optogenetic ECoG has potential applications in the study of epilepsy, cortical dynamics, and neuroprostheses.

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