首页> 外文会议>Proceedings of the 2011 IEEE/NIH Life Science Systems and Applications Workshop >An electrically-stimulate optically-record microsystem based on active CMOS multi-electrode array for dissociated cell cultures
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An electrically-stimulate optically-record microsystem based on active CMOS multi-electrode array for dissociated cell cultures

机译:基于有源CMOS多电极阵列的电刺激光学记录微系统,用于离体细胞培养

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Calcium fluorescence-based optical recording combined with patch-clamp stimulation has become the standard technique for analyzing neural network behavior. At best, stimulation is limited to only a few channels in this case. Passive multielectrode arrays for two-dimensional electrophysiology only offer electrode densities of 60 electrodes per mm2. Here, we report an active multielectrode array, constructed with a standard complementary metal-oxide-semiconductor (CMOS) technology, to perform localized extracellular stimulation of dispersed cell cultures. A 256×256 array integrated with in-pixel stimulators on a 4-by-4 mm2 CMOS chip noninvasively stimulate hippocampal cells cultured on chip at cellular resolution. Combined with calcium imaging using high-affinity indicators, we demonstrate the ability to observe spatiotemporal dynamics of neural activity.
机译:基于钙荧光的光学记录结合膜片钳刺激已成为分析神经网络行为的标准技术。在这种情况下,充其量最多只能将刺激限制在几个通道上。用于二维电生理学的无源多电极阵列只能提供每mm 2 60个电极的电极密度。在这里,我们报告了一种有源多电极阵列,该阵列采用标准的互补金属氧化物半导体(CMOS)技术构建,可对分散的细胞培养物进行局部细胞外刺激。在4 x 4 mm 2 CMOS芯片上集成像素内刺激器的256×256阵列以细胞分辨率无创地刺激在芯片上培养的海马细胞。结合使用高亲和力指标的钙成像,我们证明了观察神经活动的时空动态的能力。

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