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High-resolution three-dimensional extracellular recording of neuronal activity with microfabricated electrode arrays

机译:微型电极阵列对神经元活动的高分辨率三维细胞外记录

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摘要

Microelectrode array recordings of neuronal activity present significant opportunities for studying the brain with single-cell and spike-time precision. However, challenges in device manufacturing constrain dense multisite recordings to two spatial dimensions, whereas access to the three-dimensional (3D) structure of many brain regions appears to remain a challenge. To overcome this limitation, we present two novel recording modalities of silicon-based devices aimed at establishing 3D functionality. First, we fabricated a dual-side electrode array by patterning recording sites on both the front and back of an implantable microstructure. We found that the majority of single-unit spikes could not be simultaneously detected from both sides, suggesting that in addition to providing higher spatial resolution measurements than that of single-side devices, dual-side arrays also lead to increased recording yield. Second, we obtained recordings along three principal directions with a multilayer array and demonstrated 3D spike source localization within the enclosed measurement space. The large-scale integration of such dual-side and multilayer arrays is expected to provide massively parallel recording capabilities in the brain. ud
机译:神经元活动的微电极阵列记录为以单细胞和尖峰时间精度研究大脑提供了重要的机会。但是,设备制造中的挑战将密集的多站点记录限制在两个空间维度上,而访问许多大脑区域的三维(3D)结构似乎仍然是一个挑战。为克服此限制,我们提出了两种旨在建立3D功能的基于硅的设备的新颖记录方式。首先,我们通过在可植入微结构的正面和背面上的记录位点构图来制作双面电极阵列。我们发现,无法从两侧同时检测到大多数单单元尖峰,这表明除了提供比单侧设备更高的空间分辨率测量值之外,双侧阵列还可以提高记录产量。其次,我们使用多层阵列沿三个主要方向获得了记录,并展示了封闭测量空间内的3D尖峰源定位。这种双面和多层阵列的大规模集成有望在大脑中提供大规模的并行记录功能。 ud

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