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Evaluation of Adjoint Methods in Photoacoustic Tomography with Under-Sampled Sensors

机译:用欠采样传感器评估光声层析成像中的伴随方法

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Photo-Acoustic Tomography (PAT) can reconstruct a distribution of optical absorbers acting as instantaneous sound sources in subcutaneous microvasculature of a human breast. Adjoint methods for PAT, typically Time-Reversal (TR) and Back-Projection (BP), are ways to refocus time-reversed acoustic signals on sources by wave propagation from the position of sensors. TR and BP have different treatments for received signals, but they are equivalent under continuously sampling on a closed circular sensor array in two dimensions. Here, we analyze image quality with discrete under-sampled sensors in the sense of the Shannon sampling theorem. We investigate resolution and contrast of TR and BP, respectively in one source-sensor pair configuration and the frequency domain. With Hankel's asymptotic expansion to the integrands of imaging functions, our main contribution is to demonstrate that TR and BP have better performance on contrast and resolution, respectively. We also show that the integrand of TR includes additional side lobes which degrade axial resolution whereas that of BP conversely has relatively small amplitudes. Moreover, omnidirectional resolution is improved if more sensors are employed to collect the received signals. Nevertheless, for the under-sampled sensors, we propose the Truncated Back-Projection (TBP) method to enhance the contrast of BP using removing higher frequency components in the received signals. We conduct numerical experiments on the two-dimensional projected phantom model extracted from OA-Breast Database. The experiments verify our theories and show that the proposed TBP possesses better omnidirectional resolution as well as contrast compared with TR and BP with under-sampled sensors.
机译:光声层析成像(PAT)可以在人类乳房的皮下微脉管系统中重建充当瞬时声源的光吸收体的分布。 PAT的辅助方法,通常是时间反转(TR)和反投影(BP),是通过从传感器位置传播的波将时间反转的声信号重新聚焦在源上的方法。 TR和BP对接收到的信号有不同的处理方式,但是在二维的封闭式圆形传感器阵列上连续采样时,它们是等效的。在这里,我们从香农采样定理的意义上使用离散的欠采样传感器来分析图像质量。我们分别在一个源-传感器对配置和频域中研究TR和BP的分辨率和对比度。随着汉克尔对成像功能积分的渐近扩展,我们的主要贡献是证明TR和BP在对比度和分辨率上分别具有更好的性能。我们还表明,TR的被积包括额外的旁瓣,这会降低轴向分辨率,而BP的旁瓣反而具有相对较小的幅度。而且,如果采用更多的传感器来收集接收到的信号,则全向分辨率将得到改善。尽管如此,对于欠采样的传感器,我们提出了截断背投影(TBP)方法,以通过去除接收信号中的高频分量来增强BP的对比度。我们对从OA-Breast数据库中提取的二维投影幻影模型进行了数值实验。实验验证了我们的理论,并表明与使用欠采样传感器的TR和BP相比,拟议的TBP具有更好的全向分辨率和对比度。

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