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An image reconstruction method for endoscopic photoacoustic tomography in tissues with heterogeneous sound speed

机译:非均相声速组织内窥镜光声断层扫描的图像重建方法

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摘要

The idealized assumption of a constant speed of sound (SOS) in acoustically inhomogeneous biological tissues usually results in blurred details, acoustic distortion and artifacts in in vivo endoscopic photoacoustic tomographic (EPAT) images. In this paper, we propose an image reconstruction method to improve EPAT imaging for luminal structures with the variable SOS. In our method, an optimal SOS providing the maximal local focusing of a measuring location within the imaging region is firstly determined. The deviation in the ultrasonic propagation time caused by the variable SOS is then compensated. The grayscale images of the optical absorption distribution on the cross-sections of the luminal structures are finally reconstructed with a filtered back-projection (FBP) algorithm based on the corrected propagation time. Any prior knowledge of the SOS distribution in the imaged tissues is not required. The results of numerical simulation experiments demonstrated that the proposed method can effectively improve the image quality by reducing the misalignment of tissues, acoustic distortion and artifacts caused by the variable SOS.
机译:在声学不均匀的生物组织中,理想化的假设恒定的声音速度(SOS)通常会导致体内内窥镜光声断层(EPAT)图像中的模糊细节,声学变形和伪影。在本文中,我们提出了一种图像重建方法,以改善具有变量SOS的腔结构的Epat成像。在我们的方法中,首先确定提供在成像区域内的测量位置的最大局部聚焦的最佳SOS。然后补偿由变量SOS引起的超声波传播时间的偏差。最终基于校正的传播时间重建腔结构的横截面横截面上的光学吸收分布的灰度图像。不需要任何先前的SOS分布的先验知识。数值模拟实验的结果表明,通过降低由可变SOS引起的组织的未对准,可以有效地改善图像质量。

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