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Monte Carlo simulation of non-invasive glucose measurement based on FMCW LIDAR

机译:基于FMCW LIDAR的无创血糖测量的蒙特卡洛模拟

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Continuous non-invasive glucose monitoring is a powerful tool for the treatment and management of diabetes. A glucose measurement method, with the potential advantage of miniaturizability with no moving parts, based on the frequency modulated continuous wave (FMCW) LIDAR technology is proposed and investigated. The system mainly consists of an integrated near-infrared tunable semiconductor laser and a detector, using heterodyne technology to convert the signal from time-domain to frequency-domain. To investigate the feasibility of the method, Monte Carlo simulations have been performed on tissue phantoms with optical parameters similar to those of human interstitial fluid. The simulation showed that the sensitivity of the FMCW LIDAR system to glucose concentration can reach 0.2mM. Our analysis suggests that the FMCW LIDAR technique has good potential for noninvasive blood glucose monitoring.
机译:连续的非侵入性葡萄糖监测是治疗和管理糖尿病的有力工具。提出并研究了一种基于频率连续波(FMCW)激光雷达技术,具有无移动部件的小型化的潜在优势的葡萄糖测量方法。该系统主要由集成的近红外可调半导体激光器和检测器组成,该检测器使用外差技术将信号从时域转换到频域。为了研究该方法的可行性,已经对具有与人间质液相似的光学参数的组织模型进行了蒙特卡洛模拟。仿真表明,FMCW LIDAR系统对葡萄糖浓度的敏感性可以达到0.2mM。我们的分析表明,FMCW LIDAR技术具有良好的无创血糖监测潜力。

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