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首页> 外文期刊>Journal of Molecular Liquids >Nonlinear optical and photoacoustic properties of aqueous crystalline hemoglobin. Towards facile detection of hemoglobin concentration in blood
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Nonlinear optical and photoacoustic properties of aqueous crystalline hemoglobin. Towards facile detection of hemoglobin concentration in blood

机译:含水结晶血红蛋白的非线性光学和光声性质。 朝向血液中血红蛋白浓度的体内浓度

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摘要

In this work, nonlinear optical properties of hemoglobin are studied under the irradiation of a blue LED laser beam. The z-scan setup is applied in order to determine nonlinear optical responses. Photoacoustic waves are created in a hearable sound region. Sounds are recorded by a microphone and analyzed by using Fourier transform to evaluate the sonic frequencies. The suspensions of hemoglobin in water are prepared in the range of 120-160 mg/mL that is in the range of hemoglobin concentration in blood. It is found that the amplitude of photoacoustic (PA) signals and nonlinear absorption coefficients depend directly to the hemoglobin concentration. On the other hand, blood of rabbit is studied using this method and results are compared with the crystalline hemoglobin findings. It is concluded that the frequency domain of photoacoustic waves created by hemoglobin is similar to that observed for the blood sample. It means that the main portion of photoacoustic response in blood is due to its hemoglobin content and amplitude of the sonic signals is directly related to the concentration of hemoglobin. FT-IR studies confirmed that the vibrational levels of hemoglobin had no a significant effect on the recorded PA signals and the main PA effect has been originated from explosion of the micro- and nano-bubbles. Moreover, from the UV-Vis spectrum of hemoglobin, it can be conferred that absorption of the blue photons by the porphyrin ring leads to the evaporation of water molecules and generation of the mentioned bubbles responsible for the created sonic waves after explosion. This study would be considered as a fast and simple method to determine hemoglobin concentration in the real blood samples using nonlinear optical and photoacoustic characterizations. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文研究了在蓝光LED激光束照射下血红蛋白的非线性光学性质。z扫描装置用于确定非线性光学响应。光声波是在可听到的声音区域产生的。声音由麦克风记录,并通过傅里叶变换进行分析,以评估声音频率。水中血红蛋白悬浮液的制备范围为120-160 mg/mL,即血液中血红蛋白浓度的范围。研究发现,光声信号的振幅和非线性吸收系数与血红蛋白浓度直接相关。另一方面,用这种方法研究了兔子的血液,并将结果与结晶血红蛋白结果进行了比较。由此得出结论,血红蛋白产生的光声波的频域与观察到的血样类似。这意味着血液中光声响应的主要部分是由于其血红蛋白含量,而声音信号的振幅与血红蛋白浓度直接相关。FT-IR研究证实,血红蛋白的振动水平对记录的PA信号没有显著影响,主要的PA效应源自微气泡和纳米气泡的爆炸。此外,从血红蛋白的紫外-可见光谱可以推断,卟啉环对蓝色光子的吸收导致水分子蒸发,并产生上述气泡,从而导致爆炸后产生的声波。这项研究将被认为是一种利用非线性光学和光声表征来确定真实血液样本中血红蛋白浓度的快速而简单的方法。(C) 2020爱思唯尔B.V.版权所有。

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