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Optical sensor technology for a noninvasive continuous monitoring of blood components

机译:光学传感器技术可无创地连续监测血液成分

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NIR-spectroscopy and Photoplethysmography (PPG) is used for a measurement of blood components. The absorption-coefficient of blood differs at different wavelengths. This fact is used to calculate the optical absorbability characteristics of blood which is yielding information about blood components like hemoglobin (Hb), carboxyhemoglobin (CoHb) and arterial oxygen saturation (SpO2). The measured PPG time signals and the ratio between the peak to peak pulse amplitudes are used for a measurement of these parameters. Hemoglobin is the main component of red blood cells. The primary function of Hb is the transport of oxygen from the lungs to the tissue and carbon dioxide back to the lungs. The Hb concentration in human blood is an important parameter in evaluating the physiological status of an individual and an essential parameter in every blood count. Currently, invasive methods are used to measure the Hb concentration, whereby blood is taken from the patient and subsequently analyzed. Apart from the discomfort of drawing blood samples, an added disadvantage of this method is the delay between the blood collection and its analysis, which does not allow real time patient monitoring in critical situations. A noninvasive method allows pain free continuous on-line patient monitoring with minimum risk of infection and facilitates real time data monitoring allowing immediate clinical reaction to the measured data.
机译:近红外光谱和光电容积描记术(PPG)用于测量血液成分。血液的吸收系数在不同的波长下不同。该事实用于计算血液的光学吸收特性,该特性产生有关血液成分的信息,例如血红蛋白(Hb),羧基血红蛋白(CoHb)和动脉血氧饱和度(SpO2)。测得的PPG时间信号以及峰脉冲幅度与峰脉冲幅度之比用于测量这些参数。血红蛋白是红细胞的主要成分。 Hb的主要功能是将氧气从肺部运输到组织,并将二氧化碳运输回肺部。人血中的Hb浓度是评估个人生理状态的重要参数,也是每次血细胞计数的重要参数。当前,侵入性方法被用于测量Hb浓度,由此从患者中抽取血液并随后进行分析。除了不方便抽取血液样本之外,该方法的另一个缺点是血液采集和分析之间的延迟,这不允许在紧急情况下实时监控患者。无创方法可实现无痛连续在线患者监测,并将感染风险降至最低,并促进实时数据监测,从而对所测得的数据立即进行临床反应。

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