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Glucose detection in blood using near-infrared spectroscopy: significant wavelength for glucose detection

机译:使用近红外光谱法检测血液中的葡萄糖:检测葡萄糖的重要波长

摘要

World Health Organization (WHO) stated in 2004, about 347 million people suffered from diabetes and from this statistic, about 3.4 million died from the complication of kidney failure, heart attack, body part amputation and adequately reported suffered from blindness. There are several non-invasive techniques in measuring the blood glucose level developed nowadays and among the popular technique is the near-infrared (NIR) measurement, ultrasonic sensor implementation, multisensory systems, absorbance of transmittance, bio-impedance, voltage intensity, and thermography. Among these techniques, there are several approaches that displayed a lot of potential, nonetheless some of them have produced unsatisfying results. The NIR technique has been applied in some of previous research, however the wavelength used vary for different researcher. There are several points of views on the significant wavelength range that contains suitable information regarding the peaks of glucose in blood. This paper is focusing on the experimental data collection using the near-infrared spectroscopy technique. This paper furthermore discussing on determine the significant peaks of glucose that is suitable to be used as the indicator of the glucose in blood. The highest significant peaks of blood glucose detected from the range around 1450nm and 1930nm.
机译:世界卫生组织(WHO)在2004年表示,约3.47亿人患有糖尿病,根据这一统计数据,约有340万人死于肾衰竭,心脏病发作,肢体截肢的并发症,并有充分报道称其患有失明。如今,已经开发出了几种用于测量血糖水平的非侵入性技术,其中流行的技术是近红外(NIR)测量,超声传感器实现,多传感器系统,透射率的吸收率,生物阻抗,电压强度和热成像技术。 。在这些技术中,有几种方法显示出很大的潜力,尽管其中一些方法产生了令人不满意的结果。近红外技术已用于一些先前的研究中,但是所使用的波长因不同的研究人员而异。在重要的波长范围上有几种观点,其中包含有关血液中葡萄糖峰值的适当信息。本文着重于使用近红外光谱技术的实验数据收集。本文还讨论了确定适合用作血液中葡萄糖指标的重要葡萄糖峰。在1450nm和1930nm范围内检测到最高的血糖峰值。

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