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Reconstruction of photoacoustic tomography with finite-aperture detectors: deconvolution of the spatial impulse response

机译:用有限孔径探测器重建光声层析成像:空间脉冲响应的反卷积

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In this study, we introduce a new reconstruction method developed to reduce the finite aperture effect in photoacoustic tomography with finite-aperture detectors. The finite aperture effect and degradation in tangential resolution result from the spatial impulse response of the finite-size flat transducer. The proposed method is based on a linear, discrete model of the photoacoustic tomography system in matrix formalism. Using this model, a spatiotemporal deconvolution filter designed in minimum mean square error sense is used to compensate the spatial impulse responses associated with a finite-size flat transducer at each imaging point; thus restoration of the tangential resolution can be achieved retrospectively. The performance of the proposed reconstruction method is verified using simulation data. Compared with that reconstructed by the backprojection algorithm, the proposed method provides uniform tangential resolution over the imaging area while retaining the radial resolution because the full geometry of the flat transducer, instead of the simplified point-detector approximation is taken into consideration..
机译:在这项研究中,我们介绍了一种新的重建方法,该方法可减少具有有限孔径检测器的光声层析成像中的有限孔径效应。有限孔径效应和切向分辨率的降低是由有限尺寸的平面换能器的空间脉冲响应引起的。所提出的方法基于矩阵形式主义中光声层析成像系统的线性离散模型。使用该模型,在最小均方误差意义上设计的时空反卷积滤波器用于补偿与每个成像点上的有限尺寸平面换能器相关的空间脉冲响应。因此,可以追溯地实现切向分辨率的恢复。仿真数据验证了所提出的重建方法的性能。与通过反投影算法重建的方法相比,由于考虑了平面换能器的完整几何形状,而不是考虑了简化的点检测器近似,因此该方法在成像区域上提供了均匀的切向分辨率,同时保留了径向分辨率。

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