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Development of Portable Non-Invasive Blood Glucose Measuring Device Using NIR Spectroscopy

机译:使用NIR光谱的开发便携式非侵入性血糖测量装置

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Diabetes is an incurable disorder which produces various problems related to the body. It is a fast growing disorder, about 500 million people in the world and 50 million people in India are the victims of diabetes. All problems related to diabetes can be reduced through physical exercise, proper and balanced diet, and medication. The current invasive technique which is painful and inconvenient because people have to prick their finger to draw the blood for the measurement of glucose concentration in the blood on a daily basis so it is not recommended for a lifetime. People living in villages (economically poor) do not have facilities to check their blood sugar level regularly because of unavailability of glucose measurement devices and procedural cost. In this paper, absorbance principle is used to propose the non-invasive blood glucose monitoring design aspect. In the spectrometer experiment it has been found that, 940nm wavelength is more precise to detect the glucose concentration. Using Near-Infrared spectroscopy, The IR light passes through the finger, after amplification and filtering we get photo-plethysmograph signal as a result. From the result, we analyze the voltage variations and glucose for different samples and we observed that there is a linear relationship between voltage and glucose concentration. Microcontroller (MSP 430) is further used to display the glucose level on LCD and this data can be sent to the doctors through an android app so that patient can get early medications.
机译:糖尿病是一种无法治愈的疾病,它产生与身体有关的各种问题。这是一种快速增长的疾病,世界上大约有500万人和印度5000万人是糖尿病的受害者。通过体育,适当和平衡的饮食和药物可以减少与糖尿病相关的所有问题。目前的侵入技术是痛苦和不方便的,因为人们必须刺破他们的手指,以每天刺激血液中的葡萄糖浓度,因此不推荐用于寿命。生活在村庄(经济上穷人)的人没有由于葡萄糖测量装置和程序成本而定期检查血糖水平。在本文中,吸光度原理用于提出非侵入性血糖监测设计方面。在光谱仪实验中,已经发现,940nm波长更精确以检测葡萄糖浓度。使用近红外光谱,IR光通过手指,放大后通过指放大并过滤,我们得到了光学体积素信号。从结果中,我们分析了不同样本的电压变化和葡萄糖,我们观察到电压和葡萄糖浓度之间存在线性关系。微控制器(MSP 430)还用于在LCD上显示血糖水平,并且该数据可以通过Android应用程序发送给医生,以便患者获得早期药物。

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