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A 768-Channel CMOS Microelectrode Array With Angle Sensitive Pixels for Neuronal Recording

机译:具有角度敏感像素的神经通道记录的768通道CMOS微电极阵列。

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This paper presents a CMOS sensor array with a 768 low-noise recording sites for neural recording with 2048 intercalated angle-sensitive pixels for optical read-out. The array is highly scalable because of electrode-level digitization with serial data stream-out. The front-end amplifiers use chopping to reduce flicker noise and achieve an input-referred noise of 4.1 $mu{rm V}_{rms}$ over a 3.6 kHz bandwidth while occupying an area of only 800 $mu{rm m}^{2}$. Digitization is performed using a distributed ramp ADC that samples every sensor site at 10 kHz. The electrodes have a 50 $mu{rm m}$ pitch and are plated with platinum to increase the interface capacitance and ensure biocompatibility. The sensor array is used to refocus a lenless image and to record neural spiking and local field potentials from a mouse olfactory bulb slice.
机译:本文提出了一个具有768个低噪声记录位点的CMOS传感器阵列,用于神经记录以及2048个插入的角度敏感像素以进行光学读出。由于具有串行数据流输出的电极级数字化,该阵列具有高度可扩展性。前端放大器使用斩波来减少闪烁噪声,并获得4.1的输入参考噪声。 $ mu {rm V} _ {rms} $ 在3.6 kHz带宽上,而仅占用800个区域 $ mu {rm m} ^ {2} $ 。使用分布式斜坡ADC进行数字化,该ADC以10 kHz采样每个传感器位置。电极的间距为50 $ mu {rm m} $ 并镀铂金以增加界面电容并确保生物相容性。传感器阵列用于重新聚焦无透镜图像,并记录来自小鼠嗅球切片的神经刺激和局部场电位。

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