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A Single Simulation Platform for Hybrid Photoacoustic and RF-Acoustic Computed Tomography

机译:混合光声和层析声层析成像的单一仿真平台

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摘要

In recent years, multimodal thermoacoustic imaging has demonstrated superior imaging quality compared to other emerging modalities. It provides functional and molecular information, arising due to electromagnetic absorption contrast, at ultrasonic resolution using inexpensive and non-ionizing imaging methods. The development of optical- as well as radio frequency (RF)-induced thermoacoustic imaging systems would benefit from reliable numerical simulations. To date, most numerical models use a combination of different software in order to model the hybrid thermoacoustic phenomenon. Here, we demonstrate the use of a single open source finite element software platform (ONELAB) for photo- and RF-acoustic computed tomography. The solutions of the optical diffusion equation, frequency domain Maxwell’s equations, and time-domain wave equation are used to solve the optical, electromagnetic, and acoustic propagation problems, respectively, in ONELAB. The results on a test homogeneous phantom and an approximate breast phantom confirm that ONELAB is a very effective software for both photo- and RF-acoustic simulations, and invaluable for developing new reconstruction algorithms and hardware systems.
机译:近年来,与其他新兴形式相比,多峰热声成像已显示出卓越的成像质量。它使用廉价且非电离的成像方法以超声波分辨率提供由于电磁吸收对比而产生的功能和分子信息。光学和射频(RF)诱导的热声成像系统的发展将受益于可靠的数值模拟。迄今为止,大多数数值模型使用不同软件的组合来模拟混合热声现象。在这里,我们演示了如何使用单个开源有限元软件平台(ONELAB)进行光声和RF声学计算机断层扫描。 ONELAB中的光扩散方程,频域麦克斯韦方程和时域波动方程的解分别用于解决光学,电磁和声传播问题。测试同质模型和近似乳房模型的结果证实,ONELAB是用于光声和射频声仿真的非常有效的软件,对于开发新的重建算法和硬件系统具有不可估量的价值。

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