张氏衰减校正技术在Jaszczak幻体单光子发射计算机断层局部角度采集中的应用

K. Saha, S. Hoyt, B. Murray
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引用次数: 7

摘要

Jaszczak幻影的采集和处理是美国放射学会推荐的测试,用于评估伽马相机系统的性能。为了得到重建的虚像以进行质量评价,对其进行了衰减校正。源自幻像中心的计数衰减大于源自幻像外围的计数衰减,导致重建图像中不均匀性的人为外观,并使幻像评估复杂化。Chang的数学公式是一种常用的衰减校正方法,适用于大多数不需要外部传输源的伽马相机,如计算机断层扫描,安装在相机龙门架内的放射性核素源或洪水源。双探测器伽玛相机可采用两种不同的采集方式进行层析采集;其中一个是两个探测器处于180°配置并获取完整360°的投影图像,另一个是两个探测器处于90°配置并仅获取180°的投影图像。尽管Chang的衰减校正方法已用于360°角采集,但由于一家供应商的相机软件在图像中产生伪影,其对180°角采集的适用性仍然存在问题。本工作通过开发一种适用于两种模式的基于Chang公式的算法,研究Chang的衰减校正技术是否可以应用于两种采集模式。通过幻影均匀性分析评估衰减校正性能表明,与相机软件(57.6%)相比,该算法的均匀性提高了22.6%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Chang's attenuation correction technique for single-photon emission computed tomography partial angle acquisition of Jaszczak phantom
The acquisition and processing of the Jaszczak phantom is a recommended test by the American College of Radiology for evaluation of gamma camera system performance. To produce the reconstructed phantom image for quality evaluation, attenuation correction is applied. The attenuation of counts originating from the center of the phantom is greater than that originating from the periphery of the phantom causing an artifactual appearance of inhomogeneity in the reconstructed image and complicating phantom evaluation. Chang's mathematical formulation is a common method of attenuation correction applied on most gamma cameras that do not require an external transmission source such as computed tomography, radionuclide sources installed within the gantry of the camera or a flood source. Tomographic acquisition can be obtained in two different acquisition modes for dual-detector gamma camera; one where the two detectors are at 180° configuration and acquire projection images for a full 360°, and the other where the two detectors are positioned at a 90° configuration and acquire projections for only 180°. Though Chang's attenuation correction method has been used for 360° angle acquisition, its applicability for 180° angle acquisition remains a question with one vendor's camera software producing artifacts in the images. This work investigates whether Chang's attenuation correction technique can be applied to both acquisition modes by the development of a Chang's formulation-based algorithm that is applicable to both modes. Assessment of attenuation correction performance by phantom uniformity analysis illustrates improved uniformity with the proposed algorithm (22.6%) compared to the camera software (57.6%).
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