Opt Lett. 2022 Nov 1;47(21):5583-5586. doi: 10.1364/OL.464551.
This Letter reports a new, to the best of our knowledge, photoacoustic excitation method for evaluating the shear viscoelastic properties of soft tissues. By illuminating the target surface with an annular pulsed laser beam, circularly converging surface acoustic waves (SAWs) are generated, focused, and detected at the center of the annular beam. The shear elasticity and shear viscosity of the target are extracted from the dispersive phase velocity of the SAWs based on the Kelvin-Voigt model and nonlinear regression fitting. Agar phantoms with different concentrations, and animal liver and fat tissue samples have successfully been characterized. Different from previous methods, the self-focusing of the converging SAWs allows sufficient SNR to be obtained even with low pulsed laser energy density, which makes this approach well compatible with soft tissues under both ex vivo and in vivo testing conditions.
这封信件报告了一种新的,据我们所知,用于评估软组织剪切粘弹性的光声激发方法。通过用环形脉冲激光束照射目标表面,产生圆形会聚表面声波(SAW),并在环形光束的中心聚焦和检测。根据 Kelvin-Voigt 模型和非线性回归拟合,从 SAW 的频散相速度中提取目标的剪切弹性和剪切粘性。不同浓度的琼脂体模以及动物肝和脂肪组织样本已成功得到了表征。与以前的方法不同,会聚 SAW 的自聚焦使得即使在低脉冲激光能量密度下也能获得足够的 SNR,这使得该方法非常适用于离体和体内测试条件下的软组织。