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Simulation study of spatial resolution and sensitivity for the tapered depth of interaction PET detectors for small animal imaging.

机译:用于小动物成像的交互作用锥形深度探测器的空间分辨率和灵敏度的仿真研究。

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Improvements to current small animal PET scanners can be made by improving the sensitivity and the spatial resolution of the scanner. In the past, efforts have been made to minimize the crystal dimensions in the axial and transaxial directions to improve the spatial resolution and to increase the crystal length to improve the sensitivity of the scanner. We have designed tapered PET detectors with the purpose of reducing the gaps between detector modules and optimizing the sensitivity of a future-generation small animal PET scanner. In this work, we investigate spatial resolution and sensitivity of a scanner based on tapered detector elements using Monte Carlo simulations. For tapered detector elements more scintillation material is used per detector resulting in a higher sensitivity of the scanner. However, since the detector elements are not uniform in size, degradation in spatial resolution is also expected. To investigate characteristics of tapered PET detectors, the spatial resolution and sensitivity of a one-ring scanner were simulated for a system based on traditional cuboid detectors and a scanner based on tapered detectors. Additionally, the effect of depth of interaction (DOI) resolution on the spatial resolution for the traditional and tapered detectors was evaluated. All simulations were performed using the Monte Carlo simulation package GATE. Using the tapered arrays, a 64% improvement in the sensitivity across the field of view was found compared with traditional detectors for the same ring diameter. The level of DOI encoding was found to be the dominating factor in determining the radial spatial resolution and not the detector shape. For all levels of DOI encoding, no significant difference was found for the spatial resolution when comparing the tapered and the cuboid detectors. Detectors employing the tapered crystal design along with excellent DOI resolution will lead to PET scanners with higher sensitivity and uniform spatial resolution across the field of view.
机译:可以通过提高扫描仪的灵敏度和空间分辨率来对当前的小型动物PET扫描仪进行改进。过去,已经努力使轴向和跨轴方向上的晶体尺寸最小化,以提高空间分辨率,并增加晶体长度,以提高扫描仪的灵敏度。我们设计了锥形PET检测器,旨在减少检测器模块之间的间隙并优化下一代小型动物PET扫描仪的灵敏度。在这项工作中,我们使用蒙特卡洛模拟研究基于锥形检测器元件的扫描仪的空间分辨率和灵敏度。对于锥形探测器元件,每个探测器使用更多的闪烁材料,从而使扫描仪具有更高的灵敏度。然而,由于检测器元件的尺寸不均匀,因此还期望空间分辨率降低。为了研究锥形PET探测器的特性,针对基于传统长方体探测器的系统和基于锥形探测器的扫描器,模拟了一个单环扫描仪的空间分辨率和灵敏度。此外,还评估了交互深度(DOI)分辨率对传统探测器和锥形探测器的空间分辨率的影响。所有模拟都是使用Monte Carlo模拟软件包GATE进行的。与相同环直径的传统检测器相比,使用锥形阵列可以发现整个视野的灵敏度提高了64%。发现DOI编码的水平是确定径向空间分辨率的主要因素,而不是检测器形状。对于DOI编码的所有级别,在比较锥形和长方体检测器时,在空间分辨率上均未发现明显差异。采用锥形晶体设计以及出色的DOI分辨率的探测器将使PET扫描仪在整个视场中具有更高的灵敏度和统一的空间分辨率。

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