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Study of a high-resolution PET system using a Silicon detector probe

机译:使用硅探测器探头的高分辨率PET系统的研究

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摘要

A high-resolution silicon detector probe, in coincidence with a conventional PET scanner, is expected to provide images of higher quality than those achievable using the scanner alone. Spatial resolution should improve due to the finer pixelization of the probe detector, while increased sensitivity in the probe vicinity is expected to decrease noise. A PET-probe prototype is being developed utilizing this principle. The system includes a probe consisting of ten layers of silicon detectors, each a 80 × 52 array of 1 × 1 × 1 mm3pixels, to be operated in coincidence with a modern clinical PET scanner. Detailed simulation studies of this system have been performed to assess the effect of the additional probe information on the quality of the reconstructed images. A grid of point sources was simulated to study the contribution of the probe to the system resolution at different locations over the field of view (FOV). A resolution phantom was used to demonstrate the effect on image resolution for two probe positions. A homogeneous source distribution with hot and cold regions was used to demonstrate that the localized improvement in resolution does not come at the expense of the overall quality of the image. Since the improvement is constrained to an area close to the probe, breast imaging is proposed as a potential application for the novel geometry. In this sense, a simplified breast phantom, adjacent to heart and torso compartments, was simulated and the effect of the probe on lesion detectability, through measurements of the local contrast recovery coefficient-to-noise ratio (CNR), was observed. The list-mode ML-EM algorithm was used for image reconstruction in all cases. As expected, the point spread function of the PET-probe system was found to be non-isotropic and vary with position, offering improvement in specific regions. Increase in resolution, of factors of up to 2, was observed in the region close to the probe. Images of the resolution phantom showed visible improvement in resolution when including the probe in the simulations. The image quality study demonstrated that contrast and spill-over ratio in other areas of the FOV were not sacrificed for this enhancement. The CNR study performed on the breast phantom indicates increased lesion detectability provided by the probe.
机译:与传统的PET扫描仪相吻合的是,高分辨率硅探测器探头有望提供比单独使用扫描仪可获得的更高质量的图像。由于探针检测器的像素更精细,因此空间分辨率应有所提高,而探针附近灵敏度的提高有望降低噪声。利用这种原理正在开发PET探针原型。该系统包括一个由十层硅探测器组成的探头,每层硅探测器的80×52阵列为1×1×1 mm3像素,可以与现代临床PET扫描仪同时使用。已经对该系统进行了详细的仿真研究,以评估附加探针信息对重建图像质量的影响。模拟了点源网格,以研究探头在视场(FOV)上不同位置对系统分辨率的贡献。分辨率模型用于说明两个探头位置对图像分辨率的影响。具有热区和冷区的均匀源分布用于证明分辨率的局部提高不会以牺牲图像的整体质量为代价。由于改进仅限于靠近探头的区域,因此建议将乳房成像作为新型几何结构的潜在应用。从这个意义上讲,模拟了一个简化的靠近心脏和躯干隔室的乳房幻像,并通过测量局部对比恢复系数噪声比(CNR)观察到了探头对病变可检测性的影响。在所有情况下,列表模式ML-EM算法均用于图像重建。如预期的那样,发现PET探针系统的点扩散功能是非各向同性的,并且随位置而变化,从而在特定区域提供了改进。在靠近探针的区域中观察到分辨率提高到2倍。当在模拟中包括探头时,分辨率模型的图像显示出分辨率的明显改善。图像质量研究表明,FOV其他区域的对比度和溢出率并未为此增强而牺牲。对乳房体模进行的CNR研究表明,探头提供的病变检测能力增强。

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