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Application of Optical lens of a CD writer for Detecting the Blood Glucose Semi-invasively

机译:CD作家光学透镜在血糖中检测血糖半侵略性的应用

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Recent technological advancements in the photonics industry have led to a resurgence of interest in optical glucose sensing and to realistic progress toward the development of an optical glucose sensor. Such a sensor has the potential to significantly improve the quality of life for the estimated 16 million diabetics in this country by making routine glucose measurements more convenient. Currently over 100 small companies and universities are working to develop noninvasive or minimally invasive glucose sensing technologies, and optical methods play a large role in these efforts. It has become overwhelmingly clear that frequent monitoring and tight control of blood sugar levels are requisite for effective management of Diabetes mellitus and reduction of the complications associated with this disease. The pain and trouble associated with current "finger-stick" methods for blood glucose monitoring result in decreased patient compliance and a failure to control blood sugar levels. Thus, the development of a convenient noninvasive blood glucose monitor holds the potential to significantly reduce the morbidity and mortality associated with Diabetes. A method and apparatus for noninvasive measurement of blood glucose concentration based on transilluminated laser beam via the Index Finger has been reported in this paper. This method depends on photodiode based laser operating at 632.8 nm wavelength. During measurement, the index finger is inserted into the glucose sensing unit, the transilluminated optical signal is converted into an electrical signal, compared with the reference electrical signal, and the obtained difference signal is processed by signal processing unit which presents the results in the form of blood glucose concentration. This method would enable the monitoring blood glucose level of the diabetic patient continuously, safely and noninvasively.
机译:光子学工业的最近技术进步导致了光学葡萄糖感应的感兴趣的重新训练,并朝着光学葡萄糖传感器的发展的现实进步。通过使常规葡萄糖测量更方便,这种传感器具有显着提高该国估计的1600万糖尿病患者的生活质量。目前,100多家小公司和大学正在努力开发非侵入性或微创葡萄糖传感技术,光学方法在这些努力中起着很大的作用。由于有效管理糖尿病的有效管理和减少与这种疾病相关的并发症,它已经变得压倒性地显然是对血糖水平的常见监测和严重控制是有效管理和减少与这种疾病相关的并发症的必要条件。与当前“手指棒”血糖监测方法相关的疼痛和麻烦导致患者依从性降低和控制血糖水平。因此,方便的非血糖血糖监测仪的发展具有显着降低与糖尿病相关的发病率和死亡率的潜力。本文报道了一种基于通过食指的基于经烧成激光束的血糖浓度的非侵入性测量的方法和装置。该方法取决于在632.8nm波长下操作的基于光电二极管的激光器。在测量期间,将食指插入葡萄糖感测单元中,与参考电信号相比,通过信号处理单元处理的传输光学信号被转换成电信号,并且通过信号处理单元处理所获得的差异信号血糖浓度。该方法将连续,安全和非侵入地监测糖尿病患者的血糖水平。

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