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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Image Reconstruction in Intravascular Photoacoustic Imaging
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Image Reconstruction in Intravascular Photoacoustic Imaging

机译:血管内光声成像中的图像重建

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摘要

Intravascular photoacoustic (IVPA) imaging is a technique for visualizing atherosclerotic plaques with differential composition. Unlike conventional photoacoustic tomography scanning, where the scanning device rotates around the subject, the scanning aperture in IVPA imaging is enclosed within the imaged object. The display of the intravascular structure is typically obtained by converting detected photoacoustic waves into Cartesian coordinates, which can produce images with severe artifacts. Because the acquired data are highly limited, there does not exist a stable reconstruction algorithm for such imaging geometry. The purpose of this work was to apply image reconstruction concepts to explore the feasibility and efficacy of image reconstruction algorithms in IVPA imaging using traditional analytical formulas, such as a filtered back-projection (FBP) and the lambda-tomography method. Although the closed-form formulas are not exact for the IVPA system, a general picture of and interface information about objects are provided. To improve the quality of the reconstructed image, the iterative expectation maximization and penalized least-squares methods were adopted to minimize the difference between the measured signals and those generated by a reconstructed image. In this work, we considered both the ideal point detector and the acoustic transducers with finite- size aperture. The transducer effects including the spatial response of aperture and acoustoelectrical impulse responses were incorporated in the system matrix to reduce the aroused distortion in the IVPA reconstruction. Computer simulations and experiments were carried out to validate the methods. The applicability and the limitation of the reconstruction method were also discussed.
机译:血管内光声(IVPA)成像是一种可视化具有不同成分的动脉粥样硬化斑块的技术。与传统的光声层析成像扫描不同,在传统的光声层析成像扫描中,扫描设备围绕对象旋转,IVPA成像中的扫描孔被封闭在成像对象内。通常通过将检测到的光声波转换成笛卡尔坐标来获得血管内结构的显示,这会产生带有严重伪像的图像。由于获取的数据非常有限,因此不存在针对此类成像几何形状的稳定的重建算法。这项工作的目的是应用图像重建概念来探索使用传统的解析公式(例如,滤波反投影(FBP)和lambda断层扫描方法)在IVPA成像中图像重建算法的可行性和有效性。尽管闭式公式对于IVPA系统不是精确的,但是提供了对象的一般图片和有关接口的信息。为了提高重建图像的质量,采用了迭代期望最大化和惩罚最小二乘法,以最小化测量信号与重建图像生成的信号之间的差异。在这项工作中,我们同时考虑了理想点检测器和孔径有限的声换能器。包括孔径的空间响应和声电脉冲响应在内的换能器效应被并入系统矩阵中,以减少IVPA重建中引起的失真。进行计算机仿真和实验以验证该方法。讨论了重建方法的适用性和局限性。

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