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首页> 外文期刊>Journal of biomedical optics >k-Wave: MATLAB toolbox for the simulation and reconstruction of photoacoustic wave fields
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k-Wave: MATLAB toolbox for the simulation and reconstruction of photoacoustic wave fields

机译:k-Wave:MATLAB工具箱,用于模拟和重建光声波场

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摘要

A new, freely available third party MATLAB toolbox for the simulation and reconstruction of photoacoustic wave fields is described. The toolbox, named k-Wave, is designed to make realistic photoacoustic modeling simple and fast. The forward simulations are based on a k-space pseudo-spectral time domain solution to coupled first-order acoustic equations for homogeneous or heterogeneous media in one, two, and three dimensions. The simulation functions can additionally be used as a flexible time reversal image reconstruction algorithm for an arbitrarily shaped measurement surface. A one-step image reconstruction algorithm for a planar detector geometry based on the fast Fourier transform (FFT) is also included. The architecture and use of the toolbox are described, and several novel modeling examples are given. First, the use of data interpolation is shown to considerably improve time reversal reconstructions when the measurement surface has only a sparse array of detector points. Second, by comparison with one-step, FFT-based reconstruction, time reversal is shown to be sufficiently general that it can also be used for finite-sized planar measurement surfaces. Last, the optimization of computational speed is demonstrated through parallel execution using a graphics processing unit.
机译:描述了一种新的,可免费获得的第三方MATLAB工具箱,用于仿真和重建光声波场。该工具箱名为k-Wave,旨在使简单,快速的逼真的光声建模成为可能。前向仿真基于k空间伪谱时域解,并针对一维,二维和三维中的均质或非均质介质耦合了一阶声学方程。模拟功能还可以用作任意形状的测量表面的灵活的时间反转图像重建算法。还包括基于快速傅立叶变换(FFT)的平面探测器几何结构的一步式图像重建算法。描述了工具箱的体系结构和用法,并给出了一些新颖的建模示例。首先,当测量表面只有稀疏的检测点阵列时,数据插值的使用可显着改善时间反转的重建。其次,通过与基于FFT的单步重建进行比较,时间反转已被证明足够普遍,它也可以用于有限尺寸的平面测量表面。最后,通过使用图形处理单元的并行执行来演示计算速度的优化。

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