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Model-Based Optoacoustic Image Reconstruction of Large Three-Dimensional Tomographic Datasets Acquired With an Array of Directional Detectors

机译:大型三维断层扫描数据集的基于模型的光声图像重建,这些数据是用方向检测器阵列获得的

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摘要

Image quality in 3-D optoacoustic (photoacoustic) tomography is greatly influenced by both the measurement system, in particular the number and spatial arrangement of ultrasound sensors, and the ability to account for the spatio-temporal response of the sensor element(s) in the reconstruction algorithm. Herein we present a reconstruction procedure based on the inversion of a time-domain forward model incorporating the spatial impulse response due to the shape of the transducer, which is subsequently applied in a tomographic system based on a translation-rotation scan of a linear detector array. The proposed method was also adapted to cope with the data-intensive requirements of high-resolution volumetric optoacoustic imaging. The processing of 2 · 10 4 individual signals resulted in well-resolved images of both ~ 200 μm absorbers in phantoms and complex vascular structures in biological tissue. The results reported herein demonstrate that the introduced model-based methodology exhibits a better contrast and resolution than standard back-projection and model-based algorithms that assume point detectors. Moreover, the capability of handling large datasets anticipates that model-based methods incorporating the sensor properties can become standard practice in volumetric opto acoustic image formation.
机译:3-D光声(光声)层析成像的图像质量受测量系统(尤其是超声传感器的数量和空间布置)以及考虑传感器元件时空响应能力的影响。重建算法。本文中,我们提出了一种基于时域正向模型反演的重建程序,该模型结合了由于换能器形状而引起的空间脉冲响应,随后将其应用于基于线性探测器阵列的平移-旋转扫描的层析成像系统中。拟议的方法还适用于满足高分辨率体积光声成像的数据密集型要求。对2·10 4 单个信号的处理产生了幻像中〜200μm吸收体和生物组织中复杂血管结构的良好分辨图像。本文报道的结果表明,与采用点检测器的标准反投影和基于模型的算法相比,引入的基于模型的方法具有更好的对比度和分辨率。此外,处理大型数据集的能力预计,结合了传感器属性的基于模型的方法可以成为体积光声图像形成中的标准实践。

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