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METHOD FOR NON-INVASIVE BLOOD GLUCOSE CONCENTRATION MEASUREMENT AND DEVICE FOR IMPLEMENTING IT

机译:非侵入性血糖浓度的测量方法及其实现装置

摘要

FIELD: medicine.;SUBSTANCE: group of inventions refers to medicine. Implementing the method implies the laser irradiation of an area of the maximum clustering of blood vessels. A back scattered radiation is received and instrumentally transformed by the recovery of a direction of a polarisation vector and an intensity. They are used to derive the blood glucose concentration. The back scattered radiation intensity and polarisation are recorded through two channels symmetrical to the laser beam. Receiving channel analysers are pre-adjusted at ±45° in relation to a transmission place of the polariser. That is combined with recording a blood microcirculation dynamics in the examined skin. The measurement is taken from the skin surface immediately. The device comprises an optical coherent emitter, a polariser, two analysers, two photodetectors recording the analyser light intensity, and a microlens. The device comprises a photodetector recording the blood microcirculation, a diaphragm with a microhole, amplifiers and an output processing unit.;EFFECT: group of inventions provides the more accurate measurement and creates a structure applicable as an individual mobile sensor carrier.;2 cl, 2 dwg
机译:技术领域:发明领域:药物是一组发明。实施该方法意味着对血管最大聚集的区域进行激光照射。通过偏振矢量的方向和强度的恢复,接收并散射了反向散射的辐射。它们用于导出血糖浓度。通过两个对称于激光束的通道记录了反向散射的辐射强度和偏振。接收通道分析仪相对于偏振片的透射位置进行了±45°的预调节。结合记录被检查皮肤中的血液微循环动力学。立即从皮肤表面进行测量。该设备包括一个光学相干发射器,一个偏振器,两个分析仪,两个记录分析仪光强度的光电探测器和一个微透镜。该设备包括一个记录血液微循环的光电探测器,一个带微孔的隔膜,放大器和一个输出处理单元。效果:一组发明提供了更精确的测量结果,并创建了可用作单个移动传感器载体的结构; 2 cl, 2 dwg

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