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使用基于芯片的硅集成频域近红外光谱系统对组织模型进行光学表征

Optical Characterization of Tissue Phantoms Using a Silicon Integrated fdNIRS System on Chip.

作者信息

Sthalekar Chirag C, Miao Yun, Koomson Valencia Joyner

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Apr;11(2):279-286. doi: 10.1109/TBCAS.2016.2586103. Epub 2016 Sep 22.

DOI:10.1109/TBCAS.2016.2586103
PMID:28113987
Abstract

An interface circuit with signal processing and digitizing circuits for a high frequency, large area avalanche photodiode (APD) has been integrated in a 130 nm BiCMOS chip. The system enables the absolute oximetry of tissue using frequency domain Near Infrared Spectroscopy (fdNIRS). The system measures the light absorbed and scattered by the tissue by measuring the reduction in the amplitude of signal and phase shift introduced between the light source and detector which are placed a finite distance away from each other. The received 80 MHz RF signal is downconverted to a low frequency and amplified using a heterodyning scheme. The front-end transimpedance amplifier has a 3-level programmable gain that increases the dynamic range to 60 dB. The phase difference between an identical reference channel and the optical channel is measured with a 0.5° accuracy. The detectable current range is [Formula: see text] and with a 40 A/W reponsivity using the APD, power levels as low as 500 pW can be detected. Measurements of the absorption and reduced scattering coefficients of solid tissue phantoms using this system are compared with those using a commercial instrument with differences within 30%. Measurement of a milk based liquid tissue phantom show an increase in absorption coefficient with addition of black ink. The miniaturized circuit serves as an efficiently scalable system for multi-site detection for applications in neonatal cerebral oximetry and optical mammography.

摘要

一种用于高频、大面积雪崩光电二极管(APD)的带有信号处理和数字化电路的接口电路已集成在一个130纳米的BiCMOS芯片中。该系统能够使用频域近红外光谱(fdNIRS)对组织进行绝对血氧测定。该系统通过测量放置在彼此有限距离处的光源和探测器之间引入的信号幅度减小和相位偏移,来测量组织吸收和散射的光。接收到的80兆赫兹射频信号通过外差方案下变频到低频并放大。前端跨阻放大器具有三级可编程增益,可将动态范围增加到60分贝。相同参考通道和光学通道之间的相位差测量精度为0.5°。可检测电流范围为[公式:见文本],使用APD时响应度为40 A/W,可检测低至500皮瓦的功率水平。使用该系统对固体组织模型的吸收系数和约化散射系数的测量结果与使用商业仪器的测量结果进行比较,差异在30%以内。对基于牛奶的液体组织模型的测量表明,添加黑色墨水后吸收系数增加。该小型化电路可作为一种高效可扩展的系统,用于新生儿脑血氧测定和光学乳腺摄影中的多部位检测。

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