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A Digital-Enhanced Chip-Scale Photoacoustic Sensor System for Blood Core Temperature Monitoring and In Vivo Imaging

机译:一种用于血液核心温度监测和体内成像的数字增强芯片级光声传感器系统

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摘要

Monolithic integration of photoacoustic (PA) sensor with compact size, lightweight, and low power consumption is attractive to be implemented on wearable medical devices for in vivo blood metabolic sensing and imaging. This work presents a miniaturized chip-scale mixed-signal photoacoustic sensor system which can achieve coherent lock-in function to detect weak target PA signals noninvasively at in vivo scenarios of poor signal to noise ratio (SNR) and strong interferences. A low-noise amplifier (LNA), a 3rd order Butterworth low-pass filter (LPF), and a variable-gain amplifier (VGA) chain with 10MHz cutoff frequency are implemented on-chip to attain a high-quality sensing performance with 50-dB dynamic range. A Gilbert-cell type multiplier is integrated on-chip to fulfill the coherent lock-in process on acquired PA signals in a closed-loop process with an embedded FPGA system. Fabricated in 65-nm CMOS technology, the prototype PA sensor system demonstrated 50V sensitivity. The functions of the chip-scale PA sensor system enhanced by coherent lock-in process were validated through the experiments on temperature monitoring and vessel imaging. The PA receiver chip occupies an area of 0.6 mm(2) and consumes 20 mW at a 1.8-V supply.
机译:光声(PA)传感器的单片集成具有紧凑的尺寸,轻质和低功耗,可在可穿戴医疗设备上实现,用于体内血液代谢传感和成像。这项工作提出了一种小型化的芯片级混合信号光声传感器系统,可以实现相干的锁定功能,以在差的信噪比(SNR)和强烈干扰的差的情况下非侵略地检测弱目标PA信号。低噪声放大器(LNA),第3个订单Butterworth低通滤波器(LPF)和具有10MHz截止频率的可变增益放大器(VGA)链,以便在片上实现,以实现高品质的传感性能50 -db动态范围。吉尔伯特 - 单元型乘法器集成在片上,以满足具有嵌入式FPGA系统的闭环过程中获取的PA信号的相干锁定过程。原型PA传感器系统以65纳米CMOS技术制成,展现了50V灵敏度。通过温度监测和血管成像的实验验证了通过相干锁定过程增强的芯片级PA传感器系统的功能。 PA接收器芯片占地面积为0.6mm(2),并在1.8V电源下消耗20mW。

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