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Glucose sensing in the anterior chamber of the human eye model using supercontinuum source based dual wavelength low coherence interferometry

机译:使用基于超连续谱源的双波长低相干干涉术在人眼模型前房中进行葡萄糖感测

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Supercontinuum source based dual wavelength low coherence interferometry (DWLCI) technique is proposed to measure glucose in the aqueous humor of the eye. Studies were conducted in the second overtone region, first overtone region and combination band to determine the favourable wavelength region for glucose measurement. Bandpass filters at centre wavelengths 1300 nm, 1580 nm, 2100 nm and 2250 nm were used to filter out appropriate bands of interest for the study from the broad wavelength range of 900–2800?nm. In the studies, human eye model was used to simulate the anterior chamber of the eye containing artificial aqueous humor with varying physiological concentrations of glucose ranging from 0 to 250?mg/dl. Studies based on spectral shift measurements and relative reflectivity were conducted. Enhancement in the resolution of glucose was obtained in the combination band at 2100 nm compared to the first overtone region at 1580 nm, due to the increase in the absorption of glucose in the combination band. Glucose resolution of ≈10.3?mg/dl was estimated in the first overtone region. Whereas, an enhancement in the resolution of glucose of ≈2.4?mg/dl was attained in the combination band.
机译:提出了基于超连续谱源的双波长低相干干涉法(DWLCI)技术来测量眼房水中的葡萄糖。在第二泛音区域,第一泛音区域和组合频带中进行研究,以确定用于葡萄糖测量的有利波长区域。中心波长为1300 nm,1580 nm,2100 nm和2250 nm的带通滤光片用于滤除900-2800?nm宽波长范围内适合研究的合适波段。在研究中,使用人眼模型模拟了含有人工房水的眼前房,其中葡萄糖的生理浓度在0至250μmg/ dl范围内变化。进行了基于光谱偏移测量和相对反射率的研究。与1580nm处的第一泛音区相比,在2100nm处的组合带中获得了葡萄糖分辨率的增强,这是由于在组合带中葡萄糖的吸收增加了。在第一个泛音区估计的葡萄糖分辨率约为10.3?mg / dl。而在组合谱带中,葡萄糖的分离度提高了约2.4?mg / dl。

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