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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Photoacoustic Signal Simulation Using Discrete Particle Approach and its Application in Tomography
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Photoacoustic Signal Simulation Using Discrete Particle Approach and its Application in Tomography

机译:采用离散粒子方法的光声信号仿真及其在断层扫描中的应用

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摘要

A theoretical framework for photoacoustic (PA) signal simulation using a discrete particle approach is discussed, and the tomographic image reconstruction using such signals is reported. Various numerical phantoms in two dimensions were constructed by inserting monodisperse/polydisperse solid circles/disks of uniform strength occupying regular or random locations within the imaging region. In particular, a blood vessel network phantom was simulated by positioning solid circles mimicking red blood cells randomly within the vessel using a Monte Carlo method. The PA signal from a single disk was obtained by numerically evaluating the analytical formula, and then, such signals from many disks were summed up linearly to generate the resultant signals at detector locations. Classical backprojection and time-reversal algorithms were employed to form reconstructed images. Two model-based approaches, namely impulse response-based (IRB) and interpolation-based (IPB) methods, were also deployed for image reconstruction. Some standard parameters were calculated to assess the performance of these reconstruction algorithms. The simulation results demonstrate that the Monte Carlo method can be applied in practice for the fast simulation of tissue realization keeping microscopic details intact, and accordingly, PA signals can be calculated for photoacoustic tomography (PAT) imaging. Furthermore, the IRB technique produces images with superior quality and outperforms other algorithms.
机译:讨论了使用离散粒子方法的光声(PA)信号模拟的理论框架,并报告使用这种信号的断层图像重建。通过在成像区域内占据常规或随机位置的均匀强度的单分散/多分散固体圆圈/圆盘构建两个尺寸中的各种数值幽灵。特别地,通过使用蒙特卡罗方法定位在容器内随机地模拟红细胞的固体圆来模拟血管网络幻影。通过数值评估分析公式来获得来自单个磁盘的PA信号,然后,从许多磁盘的这种信号线性地总结以在检测器位置处产生所得信号。使用经典的反调和时间反转算法来形成重建的图像。还部署了两种基于模型的方法,即基于脉冲的基于响应(IRB)和基于插值的(IPB)方法,用于图像重建。计算一些标准参数以评估这些重建算法的性能。仿真结果表明,蒙特卡罗方法可以在实践中应用用于保持微观细节完整的组织实现的快速模拟,因此,可以计算PA信号用于光声断层扫描(PAT)成像。此外,IRB技术产生具有优异质量和优于其他算法的图像。

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