一种基于光声的连续无创血糖监测系统

Praful P. Pai, P. K. Sanki, S. Banerjee
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引用次数: 20

摘要

本文探讨了使用光声光谱(PAS)进行连续无创血糖测量。构建了一种光声(PA)测量装置,并通过对葡萄糖溶液和活组织的测量在体外和体内验证了该技术。在这两种情况下,观察到信号振幅随葡萄糖浓度的增加而增加。对每个个体应用线性校准方法,从每个PA测量中获得葡萄糖浓度值。将得到的葡萄糖值与使用标准血糖仪测量的参考葡萄糖浓度进行比较,得出平均绝对差(MAD)为23.75 mg/dl,平均绝对相对差(MARD)为18.03%。在Clarke误差网格上,对30名正常受试者进行196对测量,得出网格A到E区域上的点分布分别为67.86%、31.12%、0.0%、1.02%和0.0%。这一性能比以前使用PAS获得的性能有所改进,并指出了该技术在非侵入性血糖测量方面的潜力。提出了一种基于FPGA的可重构嵌入式结构,用于PA测量的高速数据采集、降噪和显示。该架构在Xilinx Virtex-II Pro FPGA上工作频率为274.823 MHz,信噪比提高30 dB,可实现便携式血糖监测系统。
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A photoacoustics based continuous non-invasive blood glucose monitoring system
The paper examines the use of photoacoustic spectroscopy (PAS) for making continuous non-invasive blood glucose measurements. An apparatus for performing photoacoustic (PA) measurements is constructed and the technique is verified in vitro and in vivo through measurements on glucose solutions and live tissue. The signal amplitude is observed to increase with the glucose concentration in both cases. A linear calibration method is applied on each individual to obtain a glucose concentration value from each PA measurement. The glucose values obtained are compared with reference glucose concentrations measured using a standard glucose meter, giving a mean absolute difference (MAD) of 23.75 mg/dl and a mean absolute relative difference (MARD) of 18.03%. A plot of 196 measurement pairs taken over 30 normal subjects on a Clarke Error Grid gives a point distribution of 67.86%, 31.12%, 0.0%, 1.02% and 0.0% over zones A to E of the grid. This performance is an improvement over those obtained previously using PAS and point to the potential of the technique for non-invasive glucose measurements. An FPGA based reconfigurable embedded architecture is proposed for high speed data acquisition, noise reduction and display of PA measurements. The architecture operates at 274.823 MHz on a Xilinx Virtex-II Pro FPGA providing an SNR improvement of 30 dB and enabling a portable blood glucose monitoring system.
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