Yao Da-Kang, Zhang Chi, Maslov Konstantin, Wang Lihong V
J Biomed Opt. 2014 Jan;19(1):17007. doi: 10.1117/1.JBO.19.1.017007.
The Grüneisen parameter, a constitutive parameter in photoacoustics, is usually measured from isobaric thermal expansion, which may not be valid for a biological medium due to its heterogeneity. Here, we directly measured the Grüneisen parameter by applying photoacoustic spectroscopy. Laser pulses at wavelengths between 460 and 1800 nm were delivered to tissue samples, and photoacoustic signals were detected by flat water-immersion ultrasonic transducers. Least-squares fitting photoacoustic spectra to molar optical absorption spectra showed that the Grüneisen parameter was 0.81±0.05 (mean±SD) for porcine subcutaneous fat tissue and 0.69±0.02 for porcine lipid at room temperature (22°C). The Grüneisen parameter of a red blood cell suspension was linearly related to hemoglobin concentration, and the parameter of bovine serum was 9% greater than that of water at room temperature.
格林爱森参数是光声领域的一个本构参数,通常通过等压热膨胀来测量,但由于生物介质的异质性,这种方法对其可能并不适用。在此,我们通过光声光谱法直接测量了格林爱森参数。将波长在460至1800纳米之间的激光脉冲施加到组织样本上,并用平面水浸超声换能器检测光声信号。通过对光声光谱与摩尔光学吸收光谱进行最小二乘法拟合表明,在室温(22°C)下,猪皮下脂肪组织的格林爱森参数为0.81±0.05(平均值±标准差),猪脂质的该参数为0.69±0.02。红细胞悬液的格林爱森参数与血红蛋白浓度呈线性关系,在室温下,牛血清的该参数比水的参数大9%。