利用红光和近红外发光二极管无创测量葡萄糖浓度

Semi Oh, Min-Seok Kim, Beom-Rae Noh, H. Baik, Kyoung-Kok Kim
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引用次数: 0

摘要

许多糖尿病患者设想一种无创血糖测量方法,因为他们需要定期监测血糖水平,以确保其稳定并在正常范围内。在本研究中,我们使用波长为700-1600 nm的商用发光二极管(led)检测葡萄糖浓度。长波长的光(如近红外)渗透人体皮肤并到达血管内膜,从而有助于无创测量血糖浓度。为了证明这一点,使用红色和nir - led以非侵入性方式测量葡萄糖溶液的浓度。当波长小于1000 nm时,葡萄糖检测的灵敏度更高,这是因为1000 nm以上的波长被水吸收。此外,我们控制了红色和nir - led的输入电流,以确定随葡萄糖浓度增加的光强偏差,并提出了该体外系统的最佳光波长。在不同波长的LED中,与其他波长的LED相比,700 nm的LED随着注入电流的变化表现出更高的光强偏差。特别是,与其他LED相比,当测量葡萄糖浓度在50-100 mg/dl范围内时,在700 nm LED的光强度上观察到明显的差异。
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Non-Invasive Measurement of Glucose Concentration Using Red and Near-Infrared Light-Emitting Diodes
Many diabetic mellitus patients envision a non-invasive method of blood glucose measurement since they require periodic monitoring of their blood glucose levels to ensure that it is stable and within the normal range. In this study, we detected glucose concentration using commercial light emitting diodes (LEDs) with a wavelength of 700–1600 nm. Light of long wavelengths (e.g. NIR) infiltrate human skin and reach the blood vessel lining, thereby aiding in the non-invasive measurement of blood glucose concentration. To demonstrate this, the concentration of glucose solutions was measured using red and NIR-LEDs in a non-invasive manner. The sensitivity of glucose detection was greater when light of wavelength below 1000 nm was used, owing to the absorption of wavelengths above 1000 nm by water. Furthermore, we controlled the input current of the red and NIR-LEDs to confirm the light intensity deviation with increasing glucose concentrations and suggested the optimum wavelength of light using this in-vitro system. Among various LEDs, the 700 nm LED showed higher light intensity deviation with change in injection current compared to LEDs with the other wavelengths. In particular, compared to other LEDs, a stark difference was observed in the light intensity of the 700 nm LED while measuring glucose concentrations in the range of 50–100 mg/dl.
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