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Compensation for acoustic heterogeneities in photoacoustic computed tomography using a variable temporal data truncation reconstruction method

机译:使用可变时间数据截断重建方法对光声计算机断层扫描中的声学异质性的补偿

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Photoacoustic computed tomography (PACT) is an emerging computed imaging modality that exploits optical contrast and ultrasonic detection principles to form images of the absorbed optical energy density within tissue. If the object possesses spatially variant acoustic properties that are unaccounted for by the reconstruction algorithm, the estimated image can contain distortions. While reconstruction algorithms have recently been developed for compensating for this effect, they generally require the object's acoustic properties to be known a priori. To circumvent the need for detailed information regarding an object's acoustic properties, we have previously proposed a half-time reconstruction method for PACT. A half-time reconstruction method estimates the PACT image from a data set that has been temporally truncated to exclude the data components that have been strongly aberrated. In this approach, the degree of temporal truncation is the same for all measurements. However, this strategy can be improved upon when the approximate sizes and locations of strongly heterogeneous structures, such as gas voids or bones, are known. In this work, we investigate PACT reconstruction algorithms that are based on a variable temporal data truncation (VTDT) approach that represents a generalization of the half-time reconstruction approach. In the VTDT approach, the degree of temporal truncation for each measurement is determined by the distance between the corresponding transducer location and the nearest known bone or gas void location. Computer simulation studies are employed to demonstrate the feasibility and effectiveness of the approach.
机译:光声计算机断层扫描(PACT)是一种新兴的计算成像模型,用于利用光学对比度和超声检测原理来形成组织内的吸收光能密度的图像。如果对象具有由重建算法未负责的空间变体的声学特性,则估计图像可以包含失真。虽然最近已经开发了用于补偿这种效果的重建算法,但它们通常要求对象的声学属性是先验的。为了规避关于对象的声学特性的详细信息,我们先前提出了用于协议的半时间重建方法。半时间重建方法估计已经截断的数据集中的PACT图像以排除已经强烈变化的数据分量。在这种方法中,对于所有测量,时间截短程度是相同的。然而,当已知诸如气体空隙或骨骼的强异构结构的近似尺寸和位置时,可以改善该策略。在这项工作中,我们调查了基于可变时间数据截断(VTDT)方法的PACT重建算法,该方法表示半时间重建方法的概括。在VTDT方法中,每个测量的时间截短程度由相应的换能器位置和最近的已知骨骼或气体空隙位置之间的距离确定。采用计算机仿真研究来证明该方法的可行性和有效性。

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