微电极
多电极阵列
电生理学
电极阵列
运动前神经元活动
时间分辨率
电极
CMOS芯片
材料科学
炸薯条
计算机科学
光电子学
神经科学
化学
物理
光学
物理化学
生物
电信
作者
Luca Berdondini,Kilian Imfeld,Alessandro Maccione,Mariateresa Tedesco,Simon Neukom,Milena Koudelka‐Hep,Sérgio Martinoia
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2009-01-01
卷期号:9 (18): 2644-2644
被引量:329
摘要
This paper presents a chip-based electrophysiological platform enabling the study of micro- and macro-circuitry in in-vitro neuronal preparations. The approach is based on a 64x64 microelectrode array device providing extracellular electrophysiological activity recordings with high spatial (21 microm of electrode separation) and temporal resolution (from 0.13 ms for 4096 microelectrodes down to 8 micros for 64 microelectrodes). Applied to in-vitro neuronal preparations, we show how this approach enables neuronal signals to be acquired for investigating neuronal activity from single cells and microcircuits to large scale neuronal networks. The main elements of the platform are the metallic microelectrode array (MEA) implemented in Complementary Metal Oxide Semiconductor (CMOS) technology similar to a light imager, the in-pixel integrated low-noise amplifiers (11 microVrms) and the high-speed random addressing logic. The chip is combined with a real-time acquisition system providing the capability to record at 7.8 kHz/electrode the whole array and to process the acquired signals.
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