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Microwave-Induced Thermoacoustic Imaging Model for Potential Breast Cancer Detection

机译:微波诱导的潜在声学检测的热声成像模型。

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摘要

In this study, we develop a complete microwave-induced thermoacoustic imaging (TAI) model for potential breast cancer imaging application. Acoustic pressures generated by different breast tissue targets are investigated by finite-difference time-domain simulations of the entire TAI process including the feeding antenna, matching mechanism, fluidic environment, 3-D breast model, and acoustic transducer. Simulation results achieve quantitative relationships between the input microwave peak power and the resulting specific absorption rate as well as the output acoustic pressure. Microwave frequency dependence of the acoustic signals due to different breast tissues is established across a broadband frequency range (2.3–12 GHz), suggesting key advantages of spectroscopic TAI compare to TAI at a single frequency. Reconstructed thermoacoustic images are consistent with the modeling results. This model will contribute to design, optimization, and safety evaluation of microwave-induced TAI and spectroscopy.
机译:在这项研究中,我们为潜在的乳腺癌成像应用开发了一个完整的微波诱导热声成像(TAI)模型。通过整个TAI过程的有限差分时域仿真来研究由不同的乳房组织目标产生的声压,其中包括馈电天线,匹配机制,流体环境,3-D乳房模型和声换能器。仿真结果实现了输入微波峰值功率与所得比吸收率以及输出声压之间的定量关系。由于乳腺组织不同而引起的声波信号在微波频率上的依赖性在整个宽带频率范围内(2.3–12 GHz)得以确立,这表明与单个频率下的TAI相比,光谱型TAI的关键优势。重建的热声图像与建模结果一致。该模型将有助于微波诱导TAI和光谱学的设计,优化和安全性评估。

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