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Ultra-High Spatial Resolution Multi-Energy CT using Photon Counting Detector Technology

机译:使用光子计数检测器技术的超高分辨率多能量CT

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摘要

Two ultra-high-resolution (UHR) imaging modes, each with two energy thresholds, were implemented on a research, whole-body photon-counting-detector (PCD) CT scanner, referred to as sharp and UHR, respectively. The UHR mode has a pixel size of 0.25 mm at iso-center for both energy thresholds, with a collimation of 32 × 0.25 mm. The sharp mode has a 0.25 mm pixel for the low-energy threshold and 0.5 mm for the high-energy threshold, with a collimation of 48 × 0.25 mm. Kidney stones with mixed mineral composition and lung nodules with different shapes were scanned using both modes, and with the standard imaging mode, referred to as macro mode (0.5 mm pixel and 32 × 0.5 mm collimation). Evaluation and comparison of the three modes focused on the ability to accurately delineate anatomic structures using the high-spatial resolution capability and the ability to quantify stone composition using the multi-energy capability. The low-energy threshold images of the sharp and UHR modes showed better shape and texture information due to the achieved higher spatial resolution, although noise was also higher. No noticeable benefit was shown in multi-energy analysis using UHR compared to standard resolution (macro mode) when standard doses were used. This was due to excessive noise in the higher resolution images. However, UHR scans at higher dose showed improvement in multi-energy analysis over macro mode with regular dose. To fully take advantage of the higher spatial resolution in multi-energy analysis, either increased radiation dose, or application of noise reduction techniques, is needed.
机译:在研究型全身光子计数检测器(PCD)CT扫描仪上分别实现了两种分别具有两个能量阈值的超高分辨率(UHR)成像模式,分别称为Sharp和UHR。对于两个能量阈值,UHR模式在等角点处的像素大小均为0.25 mm,准直度为32×0.25 mm。锐利模式的低能量阈值像素为0.25 mm,高能量阈值像素为0.5 mm,准直度为48×0.25 mm。使用两种模式以及标准成像模式(称为微距模式(0.5 mm像素和32×0.5 mm准直))扫描具有混合矿物质成分的肾脏结石和具有不同形状的肺结节。三种模式的评估和比较侧重于使用高空间分辨率功能准确描绘解剖结构的能力以及使用多能量功能量化石头成分的能力。锐利模式和UHR模式的低能量阈值图像由于获得了更高的空间分辨率而显示了更好的形状和纹理信息,尽管噪声也更高。使用标准剂量时,与标准分辨率(宏模式)相比,使用UHR进行的多能量分析未显示任何明显的益处。这是由于较高分辨率的图像中出现过多的噪声。但是,较高剂量的UHR扫描显示,与常规剂量的宏模式相比,多能量分析得到了改善。为了在多能量分析中充分利用更高的空间分辨率,需要增加辐射剂量或应用降噪技术。

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