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Noninvasive blood glucose detection using near infrared sensor

机译:使用近红外传感器的非血糖血糖检测

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The development of noninvasive blood glucose detector is desired to replace invasive method which is costly and uncomfortable. Near Infrared (NIR) spectroscopy is used to detect blood glucose noninvasively since glucose has specific absorbance spectrum in NIR range, 850nm-2500nm. LED is utilized as incoherent infrared source to irradiate body surface in wavelength 1550 nm. Penetrated light is then detected by InGaAs photodiode, sensitive for wavelength 850-1700 nm. As the measurement sites, earlobe is chosen since it is thin. Photodiode's current is converted into voltage using transimpedance amplifier circuit. In order to minimize high frequency noise, low pass filter is applied consecutively. Early testing is conducted by measuring penetrated light in various concentration of glucose solution with wavelength 1300nm, 1450nm, and 1550nm. Measurement indicates correlation between voltage and glucose concentration. In earlobe testing, light can penetrate tissue with detected voltage, 300mV-4V depend on the wavelength. Linear approximation and two point equation is applied to the data. This two approach extracts formula that can estimate blood glucose concentration with maximum 30% error. By using two point equation, a specific formula for each person can be obtained.
机译:期望出现非血糖血糖检测器的开发来取代昂贵和不舒服的侵入性方法。近红外线(NIR)光谱法用于检测血糖非血糖,因为葡萄糖在NIR范围内具有比850nm-2500nm具有特异性吸光光谱。 LED用于非连贯的红外源,以照射波长1550nm的体表。然后通过Ingaas光电二极管检测到穿透光,对波长850-1700nm敏感。作为测量部位,选择耳垂,因为它很薄。光电二极管的电流使用欠阻抗放大器电路转换为电压。为了使高频噪声最小化,连续应用低通滤波器。通过用波长为1300nm,1450nm和1550nm的各种浓度的葡萄糖溶液测量穿透光来进行早期测试。测量表明电压和葡萄糖浓度之间的相关性。在耳垂测试中,光可以通过检测电压穿透组织,300mV-4V取决于波长。线性近似和两个点等式应用于数据。这两种方法提取可估计最大30%误差血糖浓度的公式。通过使用两个点等式,可以获得每个人的特定公式。

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