Department of Radiology and Nuclear Medicine, Akita Research Institute of Brain and Blood Vessels, Akita, Japan.
Phys Med Biol. 2011 May 21;56(10):3061-72. doi: 10.1088/0031-9155/56/10/011. Epub 2011 Apr 20.
Activity outside the field-of-view (FOV) degrades the count rate performance of 3D PET and consequently reduces signal-to-noise ratios (SNRs) of reconstructed images. The aim of this study was to evaluate a neck-shield installed in a 3D PET scanner for reducing the effect of the outside FOV activity. Specifically, we compared brain PET scans ((15)O(2) and H(2)(15)O) with and without the use of the neck-shield. Image SNRs were directly estimated by a sinogram bootstrap method. The bootstrap analysis showed that the use of the neck-shield improved the SNR by 8% and 19% for H(2)(15)O and (15)O(2), respectively. The SNR improvements were predominantly due to the reduction of the random count rates. Noise equivalent count rate (NECR) analysis provided SNR estimates that were very similar with the bootstrap-based results for H(2)(15)O, but not for (15)O(2). This discrepancy may be due to the fundamental difference between the two methods: the bootstrap method directly calculates the local SNR of reconstructed images, whereas the NECR calculation is based on the whole-gantry count rates, indicating a limitation of the conventional NECR-based method as a tool for assessing the image SNR. Although quantitative parameters, e.g. cerebral blood flow, did not differ when examined with and without the neck-shield, the use of the shield for brain (15)O study is recommended in terms of the image SNR.
视野外(FOV)的活动会降低 3D PET 的计数率性能,从而降低重建图像的信噪比(SNR)。本研究旨在评估安装在 3D PET 扫描仪中的颈部屏蔽器,以减少视野外活动的影响。具体来说,我们比较了使用和不使用颈部屏蔽器的脑 PET 扫描((15)O(2)和 H(2)(15)O)。通过正弦图引导方法直接估计图像 SNR。引导分析表明,使用颈部屏蔽器分别使 H(2)(15)O 和 (15)O(2)的 SNR 提高了 8%和 19%。SNR 的提高主要是由于随机计数率的降低。噪声等效计数率(NECR)分析提供的 SNR 估计与基于引导的 H(2)(15)O 结果非常相似,但与 (15)O(2)不同。这种差异可能是由于两种方法之间的根本差异:引导方法直接计算重建图像的局部 SNR,而 NECR 计算基于整个回旋架的计数率,这表明传统的基于 NECR 的方法作为评估图像 SNR 的工具存在局限性。尽管使用和不使用颈部屏蔽器时检查的定量参数(例如脑血流量)没有差异,但建议在进行脑 (15)O 研究时使用屏蔽器,以提高图像 SNR。