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New Daily Detector Uniformity Quality Control Methodology for Cardiac SPECT Using Solid-State Detectors

机译:使用固态检测器的心脏SPECT新型日常检测器均匀性质量控制方法

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摘要

Detector non-uniformity can potentially introduce detectable artifacts into SPECT images. The degree of the non-uniformity and the extent and position of the non-uniform area on the detector surface determine the position and severity of the introduced artifacts. The commonly used daily uniformity quality control (QC) procedure follows the NEMA methodology but acquires fewer counts than the latter specifies. It has three major drawbacks: (1) it does not report the locations and extent of the non-uniform areas on the detector surface; (2) it may report a non-uniformity value that is lower than the true value due to the use of a 9-point filter, and it makes the reported non-uniformity value vary with the extent of the non-uniform area. These two drawbacks are inherited from the NEMA methodology. The third drawback is that the noise due to the relatively low counts collected in daily uniformity QC does not allow the measurement of certain degrees of non-uniformity with adequate statistical significance, yet such non-uniformity can potentially introduce observable artifacts. In this work we propose a new methodology for daily uniformity QC for cardiac SPECT imaging using solid-state detectors. The new QC procedure (1) reports the locations and extents of the non-uniform areas of the detectors and (2) can catch some detectors that pass the NEMA-based daily uniformity QC but are non-uniform enough to introduce detectable artifacts.
机译:检测器的不均匀性可能会在SPECT图像中引入可检测的伪影。检测器表面上的不均匀程度以及不均匀区域的程度和位置决定了引入的伪影的位置和严重性。常用的日常均匀性质量控制(QC)程序遵循NEMA方法,但获得的计数少于后者指定的计数。它具有三个主要缺点:(1)它没有报告检测器表面上不均匀区域的位置和范围; (2)由于使用了9点滤波器,其报告的不均匀值可能低于真实值,并且使得报告的不均匀值随不均匀区域的范围而变化。这两个缺点是从NEMA方法继承而来的。第三个缺点是,由于在每日均匀性QC中收集的计数相对较低而导致的噪声无法测量具有一定统计意义的特定程度的不均匀性,但是这种不均匀性可能会引入可观察到的伪影。在这项工作中,我们提出了一种使用固态探测器进行心脏SPECT成像的每日均匀度QC的新方法。新的质量控制程序(1)报告检测器不均匀区域的位置和范围,并且(2)可以捕获一些通过基于NEMA的每日均匀性QC但不够均匀以引入可检测伪像的检测器。

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