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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >Time-Divided Spread-Spectrum Code-Based 400 fW-Detectable Multichannel fNIRS IC for Portable Functional Brain Imaging
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Time-Divided Spread-Spectrum Code-Based 400 fW-Detectable Multichannel fNIRS IC for Portable Functional Brain Imaging

机译:基于时分扩频码的400 fW可检测多通道fNIRS IC,用于便携式功能性脑成像

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摘要

A custom tranceiver IC is designed to implement a portable brain imaging system based on functional near-infrared spectroscopy (fNIRS). The fNIRS IC generates multichannel time-divided spread-spectrum codes (TDSSCs) and drives light-emitting devices in the transmitter (Tx) chain, and performs optimum filtering, quantization, and serialization in the receiver (Rx) chain. A dual slope ADC subsequent to an operational transconductance amplifier-C-based matched filter shares a capacitor to save area while achieving optimum signal-to-noise ratio (SNR) in the brain channel. The Rx chain including an off-chip TIA ensures sufficient electrical SNR irrespective of the brain region for the accurate extraction of hemodynamic response. The minimum detectable light power of the Rx chain is 400 fW. The output power of the Tx is made adjustable by controlling the occurrence rate and the power of the TDSSC to reduce subject-dependent measurement variations. The proposed fNIRS system measures 42 brain regions simultaneously, and the experimental results clearly verify the validity of the proposed portable fNIRS system.
机译:定制收发器IC被设计为实现基于功能近红外光谱(fNIRS)的便携式大脑成像系统。 fNIRS IC生成多通道时分扩频码(TDSSC),并驱动发射器(Tx)链中的发光设备,并在接收器(Rx)链中执行最佳的滤波,量化和串行化。在基于跨导放大器-C的运算滤波器匹配滤波器之后的双斜率ADC共享一个电容器,以节省面积,同时在脑部通道中实现最佳信噪比(SNR)。包括片外TIA的Rx链可确保足够的电SNR,而与大脑区域无关,以准确提取血液动力学反应。 Rx链的最小可检测光功率为400 fW。通过控制TDSSC的发生率和功率,可以调整Tx的输出功率,以减少与主体相关的测量变化。拟议的fNIRS系统可同时测量42个大脑区域,实验结果清楚地证明了拟议的fNIRS系统的有效性。

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