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Noninvasive optical polarimetric glucose sensing using a true phase measurement technique

机译:使用真相测量技术的无创光学极化葡萄糖感应

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摘要

The development and testing of a noninvasive true phase optical polarimetry sensing system to monitor in vivo glucose concentrations is described. To demonstrate the applicability of this optical sensor for glucose movement, the authors calibrate the system and then test it in vitro using both a glass test cell filled with glucose solution in the physiologic range, with a path length of 0.9 cm to approximate the 1-cm path length present in the anterior chamber of the eye, and then on an excised human eye. The technique used helium neon laser light which was coupled through a rotating linear polarizer along with two stationary linear polarizers and two detectors to produce reference and signal outputs whose amplitudes varied sinusoidally with a frequency of twice the angular velocity of the rotating polarizer, and whose phase was proportional to the rotation of the linear polarization vector passing through the glucose solution.
机译:描述了监视体内葡萄糖浓度的无创真相光学旋光传感系统的开发和测试。为了证明该光学传感器对葡萄糖运动的适用性,作者对系统进行了校准,然后使用两个装满生理范围内葡萄糖溶液的玻璃测试池进行了体外测试,光程为0.9 cm,近似于1-路径长度出现在眼睛的前房中,然后在切除的人眼上。该技术使用氦氖激光,氦氖激光通过旋转的线性偏振器与两个固定的线性偏振器和两个检测器耦合,以产生参考和信号输出,其振幅以正弦变化,其频率为旋转偏振器角速度的两倍,并且其相位与通过葡萄糖溶液的线性极化矢量的旋转成正比。

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