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Improved approach to extract absorption coefficient from photoacoustic signal for photoacoustic spectroscopy

机译:用于光声光谱的从光声信号中提取吸收系数的改进方法

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Previous studies on measurements of hemoglobin concentrations and oxygen saturations of human blood by photoacoustic spectroscopy assume that the exponential attenuation of the optical radiation in blood results in photoacoustic signals with exponential temporal profiles and absorption coefficients could be extracted by fitting exponential functions. In this paper, we demonstrate that the detected photoacoustic signals are the convolutions of the optical absorption distributions in samples, and the first derivative of the temporal profile of the excitation laser, and the impulse response of the ultrasound detector. The detected photoacoustic signals from absorbers with exponential optical absorption distributions do not keep exponential profiles. In addition, we present an improved approach to calculate the absorption coefficient by fitting the detected photoacoustic signal with a function that is the convolution of an exponential function, and the first derivative of the temporal profile of the laser, and the impulse response of the detector. This approach is validated by both numerical simulations and experimental results.
机译:以前通过光声光谱法测量人血中血红蛋白浓度和氧饱和度的研究认为,血液中光辐射的指数衰减会导致光声信号具有指数的时间分布,并且可以通过拟合指数函数来提取吸收系数。在本文中,我们证明了检测到的光声信号是样品中光吸收分布的卷积,激发激​​光器的时间分布的一阶导数以及超声检测器的脉冲响应。从具有指数光学吸收分布的吸收器检测到的光声信号不保持指数分布。此外,我们提出了一种改进的方法,通过将检测到的光声信号拟合为指数函数,激光的时间分布的一阶导数和检测器的脉冲响应的卷积,来计算吸收系数。数值模拟和实验结果均验证了该方法。

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