神经网格:记录大脑表面的动作电位。

NeuroGrid: recording action potentials from the surface of the brain.

机构信息

NYU Neuroscience Institute, School of Medicine, New York University, New York, New York, USA.

Department of Neurology, Comprehensive Epilepsy Center, New York University, New York, New York, USA.

出版信息

Nat Neurosci. 2015 Feb;18(2):310-5. doi: 10.1038/nn.3905. Epub 2014 Dec 22.

Abstract

Recording from neural networks at the resolution of action potentials is critical for understanding how information is processed in the brain. Here, we address this challenge by developing an organic material-based, ultraconformable, biocompatible and scalable neural interface array (the 'NeuroGrid') that can record both local field potentials(LFPs) and action potentials from superficial cortical neurons without penetrating the brain surface. Spikes with features of interneurons and pyramidal cells were simultaneously acquired by multiple neighboring electrodes of the NeuroGrid, allowing for the isolation of putative single neurons in rats. Spiking activity demonstrated consistent phase modulation by ongoing brain oscillations and was stable in recordings exceeding 1 week's duration. We also recorded LFP-modulated spiking activity intraoperatively in patients undergoing epilepsy surgery. The NeuroGrid constitutes an effective method for large-scale, stable recording of neuronal spikes in concert with local population synaptic activity, enhancing comprehension of neural processes across spatiotemporal scales and potentially facilitating diagnosis and therapy for brain disorders.

摘要

记录神经动作电位分辨率下的神经网络活动对于理解大脑中的信息处理至关重要。在这里,我们通过开发一种基于有机材料的、超顺应性的、生物兼容的和可扩展的神经接口阵列(即“NeuroGrid”)来应对这一挑战,该阵列可以从浅层皮质神经元中记录局部场电位(LFPs)和动作电位,而无需穿透大脑表面。NeuroGrid 的多个相邻电极可以同时获取具有中间神经元和锥体细胞特征的尖峰,从而允许在大鼠中分离出潜在的单个神经元。尖峰活动表现出与脑振荡持续进行的相位调制一致,并且在超过 1 周的记录中保持稳定。我们还在接受癫痫手术的患者中记录了手术过程中 LFPs 调制的尖峰活动。NeuroGrid 构成了一种有效的方法,可以在时空尺度上协同记录神经元尖峰和局部群体突触活动,从而增强对神经过程的理解,并可能有助于脑疾病的诊断和治疗。

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