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A power efficient frequency shaping neural recorder with automatic bandwidth adjustment

机译:具有自动带宽调整功能的高效功率成形神经记录仪

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This paper presents a frequency-shaping (FS) neural recorder with automatic bandwidth adjustment. The proposed recorder inherently attenuates electrode offset and motion artifacts, compresses neural data dynamic range by 4.5-bit, and achieves a 3 pF input impedance to better support chronic recording experiments. A major drawback of an FS recorder is larger input referred noise due to noise aliasing and reduced gain at low frequencies. In this work, we have proposed a multi-phase sampling and processing technique which can 10 times reduce the noise. In addition, a neural spike processor operating at a low duty cycle has been integrated, where the processing results are feedback to the analog frontend: when the channel contains no/little spike activities, the recorder bandwidth is automatically reduced to record local field potentials (LFPs) only. The bandwidth reduction enables substantial power saving for that channel (4 times in the current implementation). The bandwidth is then automatically restored back to 8 kHz once spikes are detected from the spiking probability map. A prototyping chip has been fabricated in a 0.13 μm CMOS process. When measured at a 80 kHz sampling clock and 1.0 V supply, the recorder achieves a 3 pF input capacitance, 2.2 μV input noise for recording spikes, and 15 μW/ch power for amplifiers, filters, multiplexer, analog-to-digital converter (ADC), and digital filters combined. Empirical studies on in-vivo recordings from monkeys show that over 70% of channels do not contain detectable spikes, suggesting an averaged recording power reduction by 50% to 7.5 μW/ch.
机译:本文提出了一种具有自动带宽调整功能的频率整形(FS)神经记录器。拟议中的记录仪可固有地衰减电极偏移和运动伪影,将神经数据动态范围压缩4.5位,并获得3 pF的输入阻抗,以更好地支持长期记录实验。 FS记录器的主要缺点是由于噪声混叠和低频增益降低而导致较大的输入参考噪声。在这项工作中,我们提出了一种多相采样和处理技术,可以将噪声降低10倍。此外,还集成了工作在低占空比下的神经尖峰处理器,处理结果反馈到模拟前端:当通道不包含/很少出现尖峰活动时,记录仪带宽会自动减小以记录局部电场电位( LFP)。带宽的减少可为该通道节省大量功率(在当前实现中为4倍)。一旦从尖峰概率图中检测到尖峰,带宽便会自动恢复到8 kHz。原型芯片已通过0.13μmCMOS工艺制造。在80 kHz采样时钟和1.0 V电源下进行测量时,记录仪可实现3 pF的输入电容,2.2μV的输入噪声(用于记录尖峰)和15μW/ ch的功率(用于放大器,滤波器,多路复用器,模数转换器( ADC)和数字滤波器的组合。对猴子体内记录的经验研究表明,超过70%的通道不包含可检测到的尖峰,这表明平均记录功率降低了50%至7.5μW/ ch。

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