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Non-invasive Glucose Measurements Using Wavelength Modulated Differential Photothermal Radiometry (WM-DPTR)

机译:使用波长调制差分光热辐射法(WM-DPTR)的无创血糖测量

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摘要

Wavelength-modulated differential laser photothermal radiometry (WM-DPTR) is introduced for potential development of clinically viable non-invasive glucose biosensors. WM-DPTR features unprecedented glucose-specificity and sensitivity by combining laser excitation by two out-of-phase modulated beams at wavelengths near the peak and the baseline of a prominent and isolated mid-IR glucose absorption band. Measurements on water-glucose phantoms (0 to 300 mg/dl glucose concentration) demonstrate high sensitivity to meet wide clinical detection requirements ranging from hypoglycemia to hyperglycemia. The measurement results have been validated by simulations based on fully developed WM-DPTR theory. For sensitive and accurate glucose measurements, the key is the selection and tight control of the intensity ratio and the phase shift of the two laser beams.
机译:引入了波长调制差分激光光热辐射测定法(WM-DPTR),以潜在地开发临床上可行的非侵入性葡萄糖生物传感器。 WM-DPTR结合了两个异相调制光束的激光激发,具有前所未有的葡萄糖特异性和灵敏性,这些光束的波长分别接近峰值和孤立的中红外葡萄糖吸收带的峰值和基线。对水葡萄糖体模(葡萄糖浓度为0至300 mg / dl)的测量显示出高灵敏度,可以满足从低血糖到高血糖的广泛临床检测要求。测量结果已经通过基于完全发展的WM-DPTR理论的模拟进行了验证。对于灵敏而准确的葡萄糖测量,关键是对两个激光束的强度比和相移的选择和严格控制。

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