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首页> 外文期刊>Scientific reports. >In vivo Microscopic Photoacoustic Spectroscopy for Non-Invasive Glucose Monitoring Invulnerable to Skin Secretion Products
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In vivo Microscopic Photoacoustic Spectroscopy for Non-Invasive Glucose Monitoring Invulnerable to Skin Secretion Products

机译:体内显微光声光谱技术可用于皮肤分泌产品,无创葡萄糖监测

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摘要

Photoacoustic spectroscopy has been shown to be a promising tool for non-invasive blood glucose monitoring. However, the repeatability of such a method is susceptible to changes in skin condition, which is dependent on hand washing and drying due to the high absorption of infrared excitation light to the skin secretion products or water. In this paper, we present a method to meet the challenges of mid-infrared photoacoustic spectroscopy for non-invasive glucose monitoring. By obtaining the microscopic spatial information of skin during the spectroscopy measurement, the skin region where the infrared spectra is insensitive to skin condition can be locally selected, which enables reliable prediction of the blood glucose level from the photoacoustic spectroscopy signals. Our raster-scan imaging showed that the skin condition for in vivo spectroscopic glucose monitoring had significant inhomogeneities and large variability in the probing area where the signal was acquired. However, the selective localization of the probing led to a reduction in the effects of variability due to the skin secretion product. Looking forward, this technology has broader applications not only in continuous glucose monitoring for diabetic patient care, but in forensic science, the diagnosis of malfunctioning sweat pores, and the discrimination of tumors extracted via biopsy.
机译:光声光谱学已被证明是用于无创血糖监测的有前途的工具。然而,由于红外激发光对皮肤分泌产物或水的高吸收,这种方法的可重复性容易受到皮肤状况变化的影响,这取决于洗手和干燥。在本文中,我们提出了一种方法来应对中红外光声光谱法用于无创葡萄糖监测的挑战。通过在光谱测量期间获得皮肤的微观空间信息,可以局部选择红外光谱对皮肤状况不敏感的皮肤区域,这使得能够根据光声光谱信号可靠地预测血糖水平。我们的光栅扫描成像显示,用于体内光谱葡萄糖监测的皮肤状况在获取信号的探测区域具有明显的不均匀性和较大的变异性。但是,由于皮肤分泌产物,探针的选择性定位导致变异效应的降低。展望未来,这项技术不仅在糖尿病患者护理的连续血糖监测中,而且在法医科学,汗毛孔功能异常的诊断以及通过活组织检查提取的肿瘤的鉴别方面,都有更广泛的应用。

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