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Band-tunable and multiplexed integrated circuits for simultaneous recording and stimulation with microelectrode arrays

机译:带调谐和多路复用集成电路,可同时记录和刺激微电极阵列

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Two thin-film microelectrode arrays with integrated circuitry have been developed for extracellular neural recording in behaving animals. An eight-site probe for simultaneous neural recording and stimulation has been designed that includes on-chip amplifiers that can be individually bypassed, allowing direct access to the iridium sites for electrical stimulation. The on-probe amplifiers have a gain of 38.9 dB, an upper-cutoff frequency of 9.9 kHz, and an input-referred noise of 9.2 /spl mu/V /sub rms/ integrated 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 amplifier consumes 68 /spl mu/W from /spl plusmn/1.5 V supplies and occupies 0.177 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. A second neural recording array has been developed which multiplexes 32 neural signals onto four output data leads. Providing gain on this array eliminates the need for bulky head-mounted circuitry and reduces motion artifacts. The time-division multiplexing circuitry has crosstalk between consecutive channels of less than 6% at a sample rate of 20 kHz per channel. Amplified, time-division-multiplexed multichannel neural recording allows the large-scale recording of neuronal activity in freely behaving small animals with minimum number of interconnect leads.
机译:已经开发出两个具有集成电路的薄膜微电极阵列,用于在行为动物中进行细胞外神经记录。已经设计了一种用于同时进行神经记录和刺激的八位探针,该探针包括可以单独旁路的片上放大器,从而可以直接进入铱位进行电刺激。探头放大器的增益为38.9 dB,上截止频率为9.9 kHz,在100 Hz至10 kHz范围内积分的输入参考噪声为9.2 / spl mu / V / sub rms /。放大器的低频截止是可调的,以允许记录场电势并最小化刺激伪影。该放大器从/ spl plusmn / 1.5 V电源消耗的功率为68 / spl mu / W,在3 / spl mu / m特性中占0.177 mm / sup 2 /。体内记录表明,在距刺激电极20 / splμm/ m的位置开始刺激后1毫秒,前置放大器可以记录单单位活性。已经开发出第二神经记录阵列,其将32个神经信号多路复用到四个输出数据引线上。通过在该阵列上提供增益,无需使用笨重的头戴式电路,并减少了运动伪影。时分多路复用电路在连续通道之间的串扰小于6%,每个通道的采样率为20 kHz。放大的,时分多路复用的多通道神经记录功能可以在互连导线数量最少的情况下自由记录小动物的神经元活动的大规模记录。

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