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首页> 外文期刊>Physics in medicine and biology. >Single scan parameterization of space-variant point spread functions in image space via a printed array: the impact for two PET/CT scanners.
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Single scan parameterization of space-variant point spread functions in image space via a printed array: the impact for two PET/CT scanners.

机译:通过打印阵列对图像空间中的空间变化点扩散函数进行单次扫描参数化:对两个PET / CT扫描仪的影响。

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Incorporation of a resolution model during statistical image reconstruction often produces images of improved resolution and signal-to-noise ratio. A novel and practical methodology to rapidly and accurately determine the overall emission and detection blurring component of the system matrix using a printed point source array within a custom-made Perspex phantom is presented. The array was scanned at different positions and orientations within the field of view (FOV) to examine the feasibility of extrapolating the measured point source blurring to other locations in the FOV and the robustness of measurements from a single point source array scan. We measured the spatially-variant image-based blurring on two PET/CT scanners, the B-Hi-Rez and the TruePoint TrueV. These measured spatially-variant kernels and the spatially-invariant kernel at the FOV centre were then incorporated within an ordinary Poisson ordered subset expectation maximization (OP-OSEM) algorithm and compared to the manufacturer's implementation using projection space resolution modelling (RM). Comparisons were based on a point source array, the NEMA IEC image quality phantom, the Cologne resolution phantom and two clinical studies (carbon-11 labelled anti-sense oligonucleotide [(11)C]-ASO and fluorine-18 labelled fluoro-l-thymidine [(18)F]-FLT). Robust and accurate measurements of spatially-variant image blurring were successfully obtained from a single scan. Spatially-variant resolution modelling resulted in notable resolution improvements away from the centre of the FOV. Comparison between spatially-variant image-space methods and the projection-space approach (the first such report, using a range of studies) demonstrated very similar performance with our image-based implementation producing slightly better contrast recovery (CR) for the same level of image roughness (IR). These results demonstrate that image-based resolution modelling within reconstruction is a valid alternative to projection-based modelling, and that, when using the proposed practical methodology, the necessary resolution measurements can be obtained from a single scan. This approach avoids the relatively time-consuming and involved procedures previously proposed in the literature.
机译:在统计图像重建过程中并入分辨率模型通常会产生分辨率和信噪比均得到改善的图像。提出了一种新颖实用的方法,可使用定制的有机玻璃体模内的印刷点源阵列快速准确地确定系统矩阵的总体发射和检测模糊成分。在视场(FOV)内的不同位置和方向上扫描阵列,以检查将测量的点源模糊外推到FOV中的其他位置的可行性以及单点源阵列扫描的测量鲁棒性。我们在两个PET / CT扫描仪B-Hi-Rez和TruePoint TrueV上测量了基于空间变异图像的模糊。然后将这些测量的空间变异核和FOV中心的空间不变核合并到普通的Poisson有序子集期望最大化(OP-OSEM)算法中,并与制造商使用投影空间分辨率建模(RM)的实现方案进行比较。比较基于点源阵列,NEMA IEC图像质量幻像,科隆分辨率幻像和两项临床研究(碳11标记的反义寡核苷酸[(11)C] -ASO和氟18标记的氟-1-胸苷[(18)F] -FLT)。从单次扫描成功地获得了空间变异图像模糊的稳健而准确的测量结果。空间可变的分辨率建模导致远离FOV中心的分辨率显着提高。空间变异的图像空间方法与投影空间方法之间的比较(第一份此类报告,使用了一系列研究方法)显示出非常相似的性能,与我们基于图像的实现方法相比,在相同水平的图像产生了更好的对比度恢复(CR)图像粗糙度(IR)。这些结果表明,重建中基于图像的分辨率建模是基于投影的建模的有效替代方法,并且当使用建议的实用方法时,可以从单次扫描中获得必要的分辨率测量值。这种方法避免了先前文献中提出的相对耗时且涉及的过程。

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