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首页> 外文期刊>AJR: American Journal of Roentgenology : Including Diagnostic Radiology, Radiation Oncology, Nuclear Medicine, Ultrasonography and Related Basic Sciences >Vascular Diameter Measurement in CT Angiography: Comparison of Model-Based Iterative Reconstruction and Standard Filtered Back Projection Algorithms In Vitro.
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Vascular Diameter Measurement in CT Angiography: Comparison of Model-Based Iterative Reconstruction and Standard Filtered Back Projection Algorithms In Vitro.

机译:CT血管造影中的血管直径测量:体外基于模型的迭代重建与标准滤波反投影算法的比较。

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The purpose of this study was to evaluate the performance of model-based iterative reconstruction (MBIR) in measurement of the inner diameter of models of blood vessels and compare performance between MBIR and a standard filtered back projection (FBP) algorithm.Vascular models with wall thicknesses of 0.5, 1.0, and 1.5 mm were scanned with a 64-MDCT unit and densities of contrast material yielding 275, 396, and 542 HU. Images were reconstructed images by MBIR and FBP, and the mean diameter of each model vessel was measured by software automation. Twenty separate measurements were repeated for each vessel, and variance among the repeated measures was analyzed for determination of measurement error. For all nine model vessels, CT attenuation profiles were compared along a line passing through the luminal center on axial images reconstructed with FBP and MBIR, and the 10-90% edge rise distances at the boundary between the vascular wall and the lumen were evaluated.For images reconstructed with FBP, measurement errors were smallest for models with 1.5-mm wall thickness, except those filled with 275-HU contrast material, and errors grew as the density of the contrast material decreased. Measurement errors with MBIR were comparable to or less than those with FBP. In CT attenuation profiles of images reconstructed with MBIR, the 10-90% edge rise distances at the boundary between the lumen and vascular wall were relatively short for each vascular model compared with those of the profile curves of FBP images.MBIR is better than standard FBP for reducing reconstruction blur and improving the accuracy of diameter measurement at CT angiography.
机译:这项研究的目的是评估基于模型的迭代重建(MBIR)在测量血管模型内径方面的性能,并比较MBIR与标准过滤反投影(FBP)算法之间的性能。用64-MDCT装置扫描0.5、1.0和1.5 mm的厚度,对比材料的密度分别为275、396和542 HU。通过MBIR和FBP重建图像,并通过软件自动化测量每个模型容器的平均直径。对每个容器重复进行二十次单独的测量,并分析重复测量之间的差异,以确定测量误差。对于所有九个模型血管,在通过FBP和MBIR重建的轴向图像上,沿着穿过腔中心的线比较了CT衰减曲线,并评估了血管壁和管腔之间边界的10-90%边缘上升距离。对于用FBP重建的图像,壁厚1.5毫米的模型的测量误差最小,除了那些填充275-HU对比材料的图像外,并且随着对比材料的密度降低,误差增大。 MBIR的测量误差与FBP相当或更小。在用MBIR重建的图像的CT衰减曲线中,与FBP图像的轮廓曲线相比,每种血管模型在腔和血管壁之间的边界处的10-90%边缘上升距离相对较短。 FBP可减少重建模糊并提高CT血管造影术中直径测量的准确性。

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