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Design of an integrated microelectrode array system for high spatiotemporal resolution chemical imaging

机译:高时空分辨率化学成像集成微电极阵列系统设计

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There has been a growing interest in electrochemical measurement of the output from biological specimens. With the advent of silicon CMOS technology, it is possible to measure target molecule release and movement through extra cellular space using microelectrode arrays (MEAs). While MEAs have been used for electrophysiological measurements, their use for electrochemistry in physiological studies have only been explored more recently. This paper presents a unique design of a high-density MEA and its supporting circuits to acquire images of chemical gradients using electrochemical methods. Heat-map image acquisition is supported at the system level with custom designed MATLAB tools for data-to-image processing. The detection range of chemical concentrations is illustrated with experimental results demonstrating capture of neurotransmitter release from live adrenal slices.
机译:对生物样品的输出进行电化学测量的兴趣日益浓厚。随着硅CMOS技术的出现,使用微电极阵列(MEA)可以测量靶分子在细胞外空间的释放和运动。尽管MEA已经用于电生理学测量,但是它们在生理学研究中的电化学用途只是在最近才被探索。本文提出了一种高密度MEA及其支持电路的独特设计,以使用电化学方法来获取化学梯度图像。定制设计的MATLAB工具可在系统级别支持热图图像采集,以进行数据到图像的处理。实验结果说明了化学浓度的检测范围,该结果表明捕获了活肾上腺切片释放的神经递质。

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