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Simulations of optoacoustic wave propagation in light-absorbing media using the finite difference time-domain method

机译:利用有限差分时间域方法模拟光吸收介质中的光声波传播

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Optoacoustic (OA) imaging is an emerging technology that combines the high contrast of tissue optical properties and the high spatial resolution of ultrasound. In order to take full advantage of the imaging scheme, a better understanding of the OA wave propagation in light-absorbing media is necessary. In this study we propose a new numerical approach based on the finite difference time-domain (FDTD) method to solve the general OA equations. We adopted a MacCorrnack-type splitting scheme for modeling OA wave propagation in a light-absorbing medium with heterogeneous acoustic properties. The FDTD code was validated both numerically and experimentally. Characteristics of simulated OA waveforms and OA images are discussed, with emphasis laid upon the effects caused by acoustic heterogeneities in practical imaging conditions.
机译:光声(OA)成像是一种新兴技术,结合了组织光学性质的高对比度和超声波的高空间分辨率。为了充分利用成像方案,需要更好地理解光吸收介质中的OA波传播。在这项研究中,我们提出了一种基于有限差分时间域(FDTD)方法来解决通用OA方程的新的数值方法。我们采用了一种MACCorrnack型分裂方案,用于在具有异质声学特性的光吸收介质中建模OA波传播。 FDTD代码在数字和实验上进行了验证。讨论了模拟OA波形和OA图像的特征,重点铺设了在实际成像条件下的声学异质性引起的效果。

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