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Nonlinear photoacoustic spectroscopy of hemoglobin

机译:血红蛋白的非线性光声光谱

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摘要

As light intensity increases in photoacoustic imaging, the saturation of optical absorption and the temperature dependence of the thermal expansion coefficient result in a measurable nonlinear dependence of the photoacoustic (PA) signal on the excitation pulse fluence. Here, under controlled conditions, we investigate the intensity-dependent photoacoustic signals from oxygenated and deoxygenated hemoglobin at varied optical wavelengths and molecular concentrations. The wavelength and concentration dependencies of the nonlinear PA spectrum are found to be significantly greater in oxygenated hemoglobin than in deoxygenated hemoglobin. These effects are further influenced by the hemoglobin concentration. These nonlinear phenomena provide insights into applications of photoacoustics, such as measurements of average inter-molecular distances on a nm scale or with a tuned selection of wavelengths, a more accurate quantitative PA tomography.
机译:随着光声成像中光强度的增加,光吸收的饱和度和热膨胀系数的温度依赖性导致光声(PA)信号对激发脉冲能量密度的可测量的非线性依赖性。在这里,在受控条件下,我们研究了来自氧合和脱氧血红蛋白在不同的光学波长和分子浓度下强度依赖性的光声信号。发现在氧化的血红蛋白中非线性PA光谱的波长和浓度依赖性显着大于在脱氧的血红蛋白中。这些效应还受到血红蛋白浓度的影响。这些非线性现象为光声的应用提供了见识,例如在nm尺度上平均分子间距离的测量或对波长的调整选择,更精确的定量PA层析成像。

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