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

机译:时域有限差分法模拟光声波在吸光介质中的传播

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摘要

Optoacoustic (OA) imaging is an emerging technology that combines the high optical contrast of tissues with the high spatial resolution of ultrasound. Taking full advantage of OA imaging requires a better understanding of OA wave propagation in light-absorbing media. Current simulation methods are mainly based on simplified conditions such as thermal confinement, negligible viscosity, and homogeneous acoustic properties throughout the image object. In this study a new numerical approach is proposed based on a finite-difference time-domain (FDTD) method to solve the general OA equations, comprising the continuity, Navier-Stokes, and heat-conduction equations. The FDTD code was validated using a benchmark problem that has an approximate analytical solution. OA experiments were also conducted and data were in good agreement with those predicted by the FDTD method. Characteristics of simulated OA waveforms and OA images were discussed. The simulator was also employed to study wavefront distortion in OA breast imaging. © 2005 Acoustical Society of America.
机译:光声(OA)成像是一种新兴技术,将组织的高光学对比度与超声的高空间分辨率结合在一起。充分利用OA成像的优势,需要更好地了解OA波在吸光介质中的传播。当前的模拟方法主要基于简化的条件,例如整个图像对象的热限制,可忽略的粘度和均一的声学特性。在这项研究中,提出了一种基于时域有限差分法(FDTD)的新数值方法,用于求解一般的OA方程,包括连续性,Navier-Stokes和导热方程。 FDTD代码使用具有近似分析解决方案的基准问题进行了验证。还进行了OA实验,数据与FDTD方法预测的数据非常吻合。讨论了模拟OA波形和OA图像的特征。该模拟器还用于研究OA乳腺成像中的波前畸变。 &复制; 2005年美国声学学会。

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