首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >A silicon microelectrode array for simultaneous recording and stimulation in the brain of behaving animals
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A silicon microelectrode array for simultaneous recording and stimulation in the brain of behaving animals

机译:可同时记录和刺激行为动物大脑的硅微电极阵列

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This paper presents an eight-channel silicon neural probe with integrated CMOS circuitry designed for simultaneous recording and stimulation in the brain. The probe includes eight on-chip amplifiers that can be individually bypassed, allowing direct access to the indium sites for electrical stimulation. The on-probe amplifiers have a gain of 38.9dB, an upper cutoff frequency of 9.9 kHz, and an input referred noise of 9.2 /spl mu/Vrms from 100 Hz to 10 kHz. The low-frequency cutoff of the amplifier is tunable to allow the recording of field potentials and minimize stimulus artifact. The on-probe circuitry consumes 672 /spl mu/W from /spl plusmn/1.5 V supplies and occupies 2.02 mm/sup 2/ in 3 /spl mu/m features. In-vivo recordings have shown that the preamplifiers can record single-unit activity 1 ms after the onset of stimulation on sites as close as 20 /spl mu/m to the stimulating electrode. Further artifact suppression is achievable with precise tuning of the low-frequency amplifier cutoff.
机译:本文介绍了一种具有集成CMOS电路的八通道硅神经探头,该探头设计用于同时记录和刺激大脑。该探头包括八个可单独旁路的片上放大器,可直接进入铟位点进行电刺激。探头上放大器的增益为38.9dB,最高截止频率为9.9 kHz,从100 Hz到10 kHz的输入参考噪声为9.2 / spl mu / Vrms。放大器的低频截止是可调的,以允许记录场电势并使刺激伪影最小化。探针上电路从/ spl plusmn / 1.5 V电源消耗672 / spl mu / W,在3 / spl mu / m功能中占2.02 mm / sup 2 /。体内记录表明,在距刺激电极20 / spl mu / m的位置开始刺激后1毫秒,前置放大器可以记录单个单位的活性。通过精确调整低频放大器的截止频率,可以进一步抑制伪影。

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