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A new approach to non-invasive blood glucose measurement based on 2 dimension photoacoustic spectrum

机译:基于2尺寸光声光谱的非侵入性血糖测量的一种新方法

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Diabetes mellitus (DM) is worldwide health concern whose complication leads to death. Stabbing finger as prevalent monitoring method brings pain and risk of infection to the patient. Photoacoustic technique is employed to determinate the concentration of blood glucose non-invasively due to its advantage of avoiding the disturbance of optical scattering. But until now there is still no breakthrough on non-invasive blood glucose determination. The problem is that there is not only glucose in human blood but also a lot of other interference elements such as protein, fat and so on. These elements could interfere determination and cause accurate and useful information lost. To solve this problem, we proposed a new approach: using 2 dimension spectrum of photoacoustic extracting multi information of photoacoustic signal which mean combing optical spectrum and sound spectrum. This could improve the specificity and accuracy of detection. This paper describes the theory of photoacoustic and the dual-spectral method of photoacoustic. The experiment system is built to verify the 2 dimension spectrum method used in concentration determination. The experiment result shows that dual-spectrum of photoacoustic method can realize non-invasive photoacoustic blood glucose measurement.
机译:糖尿病(DM)是全球健康问题,其并发症导致死亡。刺手指作为普遍的监测方法带来疼痛和感染患者的风险。由于其优点是避免光学散射的干扰,因此采用光声技术来测定血糖的浓度。但到目前为止,在非侵略性血糖的测定仍然没有突破。问题是人类血液中不仅有葡萄糖,还有很多其他干涉元素,如蛋白质,脂肪等。这些元素可能会干扰确定并导致准确和有用的信息丢失。为了解决这个问题,我们提出了一种新方法:使用光声提取的2尺寸光声谱意味着梳理光学频谱和声光谱的光声信号。这可以提高检测的特异性和准确性。本文介绍了光声和光声的双光谱法的理论。建立实验系统以验证浓度测定中使用的2尺寸谱方法。实验结果表明,光声方法的双光谱可以实现非侵入性光声血糖测量。

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