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Impedance Spectroscopy and Electrophysiological Imaging of Cells with a High-density CMOS Microelectrode Array System

机译:高密度CMOS微电极阵列系统的细胞阻抗谱和电生理成像

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摘要

A monolithic multi-functional CMOS microelectrode array system was developed that enables label-free electrochemical impedance spectroscopy of cells in-vitro at high spatiotemporal resolution. The electrode array includes 59,760 platinum microelectrodes, densely packed within a 4.5 mm×2.5 mm sensing region at a pitch of 13.5 μm. 32 on-chip lock-in amplifiers can be used to measure the impedance of any arbitrarily chosen subset of electrodes in the array. A sinusoidal voltage, generated by an on-chip waveform generator with a frequency range from 1 Hz to 1 MHz, was applied to the reference electrode. The sensing currents through the selected recording electrodes were amplified, demodulated, filtered and digitized to obtain the magnitude and phase information of the respective impedances. The circuitry consumes only 412 μW at 3.3 V supply voltage and occupies only 0.1 mm2, for each channel. The system also included 2048 extracellular action-potential recording channels on the same chip. Proof of concept measurements of electrical impedance imaging and electrophysiology recording of cardiac cells and brain slices are demonstrated in this paper. Optical and impedance images showed a strong correlation.
机译:开发了一种单片多功能CMOS微电极阵列系统,该系统能够以高时空分辨率对体外细胞进行无标签电化学阻抗谱分析。电极阵列包括59,760个铂微电极,它们以13.5μm的间距紧密堆积在4.5 mm×2.5 mm的感应区域内。 32个片上锁定放大器可用于测量阵列中任意选择的电极子集的阻抗。由片上波形发生器产生的频率范围为1 Hz至1 MHz的正弦电压被施加到参考电极。通过选择的记录电极的感测电流被放大,解调,滤波和数字化,以获得各个阻抗的大小和相位信息。对于每个通道,该电路在3.3 V电源电压下仅消耗412μW,仅占用0.1 mm 2 。该系统在同一芯片上还包括2048个细胞外动作电位记录通道。本文展示了对心脏细胞和脑切片的电阻抗成像和电生理记录进行概念验证的方法。光学和阻抗图像显示出很强的相关性。

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