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Residual voltage analysis for the development of efficient stimulation methodology in integrated circuits

机译:残余电压分析,用于开发集成电路中的有效激励方法

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This paper discusses fast artifact recovery-related issues regarding the parameters of microelectrode arrays in systems for simultaneous, multichannel stimulation and recording of neural cells. The results of area-independent parameterization of planar, circular, platinized microelectrodes are presented. Simulation results are described that show the influence of parameters of microelectrode and biphasic stimulus pulse on the residual voltage of the electrode, which is the main determinant of artifact's duration. The results are planned to be applied in the development of integrated circuit for fast transition between the phases of stimulation and recording.
机译:本文讨论了有关快速人工制品恢复的相关问题,涉及同时,多通道刺激和记录神经细胞的系统中微电极阵列的参数。给出了平面,圆形,镀铂微电极与面积无关的参数化结果。仿真结果描述了微电极和双相刺激脉冲的参数对电极残余电压的影响,电极残余电压是工件持续时间的主要决定因素。该结果计划用于集成电路的开发,以在刺激和记录的各个阶段之间快速过渡。

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