Determination of wavelength candidates for non-invasive hemoglobin measurement devices and energy spectrum analysis

Umu Nasiba, R. P. Jenie, Irzaman, H. Alatas
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引用次数: 3

Abstract

Hemoglobin (Hb) is an important parameter in human medical treatment. At present, hemoglobin level is measured by invasive method. This method require blood sample, less accurate and the result can be delayed. So that, human hemoglobin spectrophotometry characterization research to obtain a spectrophotometric spectrum in the development of non-invasive hemoglobin measuring devices is needed. The advantages of non-invasive method are do not require blood samples, high accuracy, painless, and allow for quick. Hemoglobin level measurement in non-invasive method can be done by measuring light absorption at different wavelengths. This non-invasive device needs appropriate LED wavelength to detect the level of hemoglobin. Hemoglobin is the dominant absorbent at 800-1600 nm. This experiment used near infrared (NIR) spectrum analysis in 1000-2500 nm. The result of this experiment is the candidates for LED wavelength that can be used in non-invasive hemoglobin measurement devices are 1200 nm and 1300 nm. This determination is based on the lowest standard deviation value at 1293 nm, the highest correlation value at a wavelength of 1266 nm, and is in the near infrared region vibration of C-H functional group at the 3rd energy level, 1252 nm in harmonic vibration. At a wavelength of 1200 nm and 1300 nm it shows low infrared absorption. It shows that non-invasive hemoglobin measuring devices that use an infrared reflectance sensor can be used.Hemoglobin (Hb) is an important parameter in human medical treatment. At present, hemoglobin level is measured by invasive method. This method require blood sample, less accurate and the result can be delayed. So that, human hemoglobin spectrophotometry characterization research to obtain a spectrophotometric spectrum in the development of non-invasive hemoglobin measuring devices is needed. The advantages of non-invasive method are do not require blood samples, high accuracy, painless, and allow for quick. Hemoglobin level measurement in non-invasive method can be done by measuring light absorption at different wavelengths. This non-invasive device needs appropriate LED wavelength to detect the level of hemoglobin. Hemoglobin is the dominant absorbent at 800-1600 nm. This experiment used near infrared (NIR) spectrum analysis in 1000-2500 nm. The result of this experiment is the candidates for LED wavelength that can be used in non-invasive hemoglobin measurement devices are 1200 nm and 1300 nm. This dete...
非侵入性血红蛋白测量装置和能谱分析候选波长的测定
血红蛋白(Hb)是人类医学治疗的重要参数。目前,血红蛋白水平的测定采用有创法。这种方法需要采集血液,准确性较低,结果可能会延迟。因此,在人体血红蛋白分光光度法表征研究中获得一种分光光度光谱的无创血红蛋白测量装置是很有必要的。非侵入性方法的优点是不需要血液样本,准确性高,无痛,并允许快速。血红蛋白水平的无创测量可以通过测量不同波长的光吸收来完成。这种非侵入性设备需要适当的LED波长来检测血红蛋白水平。血红蛋白是800-1600 nm的主要吸收剂。本实验采用近红外(NIR)光谱分析,波长为1000 ~ 2500 nm。本实验的结果是可用于非侵入性血红蛋白测量装置的候选LED波长为1200 nm和1300 nm。这是基于在1293 nm处的最低标准偏差值,在1266 nm处的最高相关值,并且是在近红外区C-H官能团在第3能级的振动,1252 nm处的谐波振动。在波长为1200nm和1300nm时,它表现出较低的红外吸收。这表明使用红外反射传感器的非侵入性血红蛋白测量装置是可以使用的。血红蛋白(Hb)是人类医学治疗的重要参数。目前,血红蛋白水平的测定采用有创法。这种方法需要采集血液,准确性较低,结果可能会延迟。因此,在人体血红蛋白分光光度法表征研究中获得一种分光光度光谱的无创血红蛋白测量装置是很有必要的。非侵入性方法的优点是不需要血液样本,准确性高,无痛,并允许快速。血红蛋白水平的无创测量可以通过测量不同波长的光吸收来完成。这种非侵入性设备需要适当的LED波长来检测血红蛋白水平。血红蛋白是800-1600 nm的主要吸收剂。本实验采用近红外(NIR)光谱分析,波长为1000 ~ 2500 nm。本实验的结果是可用于非侵入性血红蛋白测量装置的候选LED波长为1200 nm和1300 nm。这潜艇雷达…
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