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A Novel Reconstruction Method with Time Reversal Algorithm and Evaluations for Photoacoustic Tomography

机译:一种具有时间反转算法的光声层析成像重建新方法及评估

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Photoacoustic tomography (PAT) is a new modality with a high-resolution and a high contrast, the reconstruction process of which can result in improvements of the imaging quality. The aim of this study is to present an attempt to develop a novel reconstruction method with a time reversal algorithm (TR) for the PAT in an inhomogeneous media. By incorporating the finite difference time domain method (FDTD), the imaging reconstruction with the TR algorithm was formulated firstly. Then, two numerical simulations and an ex vivo experiment were both carried out to evaluate the capability of the proposed method in this work. The obtained results showed qualitatively the PAT images could be reconstructed well both in an inhomogeneous numerical model from different scanning ways and in a phantom model embedded with an ex vivo tumor of patients. Although the TR based algorithms may cost a bit more time than another in reconstruction process, it would be more practical approach for photoacoustic tomography with arbitrary scanning ways and better capability of imaging in inhomogeneous media, could also encourage us to further discuss its applicability of tumor detection in patients.
机译:光声层析成像(PAT)是一种具有高分辨率和高对比度的新形式,其重建过程可以提高成像质量。这项研究的目的是提出一种尝试,以开发一种非均质媒体中PAT的具有时间反转算法(TR)的新颖重建方法。通过结合时域有限差分法(FDTD),首先提出了采用TR算法进行成像重建的方法。然后,进行了两个数值模拟和一个体外实验,以评估该方法在这项工作中的能力。获得的结果表明,在不同扫描方式的非均匀数值模型以及嵌入患者离体肿瘤的幻影模型中,PAT图像都可以很好地重建。尽管基于TR的算法在重建过程中可能比其他算法花费更多的时间,但它对于采用任意扫描方式进行光声层析成像和在非均匀介质中具有更好的成像能力将是一种更实用的方法,也可能鼓励我们进一步讨论其在肿瘤中的适用性在患者中进行检测。

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