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Using triple gamma coincidences with a pixelated semiconductor Compton-PET scanner: a simulation study

机译:将三重伽玛巧合与像素化半导体Compton-PET扫描仪结合使用:模拟研究

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The Voxel Imaging PET (VIP) Pathfinder project presents a novel design using pixelated semiconductor detectors for nuclear medicine applications to achieve the intrinsic image quality limits set by physics. The conceptual design can be extended to a Compton gamma camera. The use of a pixelated CdTe detector with voxel sizes of 1×1×2mm~3 guarantees optimal energy and spatial resolution. However, the limited time resolution of semiconductor detectors makes it impossible to use Time Of Flight (TOF) with VIP PET. TOF is used in order to improve the signal to noise ratio (SNR) by using only the most probable portion of the Line-Of-Response (LOR) instead of its entire length. To overcome the limitation of CdTe time resolution, we present in this article a simulation study using β~+-γ emitting isotopes with a Compton-PET scanner. When the β~+ annihilates with an electron it produces two gammas which produce a LOR in the PET scanner, while the additional gamma, when scattered in the scatter detector, provides a Compton cone that intersects with the aforementioned LOR. The intersection indicates, within a few mm of uncertainty along the LOR, the origin of the beta-gamma decay. Hence, one can limit the part of the LOR used by the image reconstruction algorithm.
机译:Voxel Imaging PET(VIP)探路者项目提出了一种新颖的设计,该技术使用了核医学应用中的像素化半导体探测器,以达到物理设定的固有图像质量限制。概念设计可以扩展到康普顿伽马相机。使用像素尺寸为1×1×2mm〜3的像素化CdTe检测器可确保最佳的能量和空间分辨率。但是,由于半导体探测器的时间分辨率有限,因此无法在VIP PET中使用飞行时间(TOF)。 TOF用于通过仅使用响应线(LOR)的最可能部分而不是其整个长度来改善信噪比(SNR)。为了克服CdTe时间分辨率的局限性,我们在本文中介绍了使用Compton-PET扫描仪使用发射β〜+-γ同位素的模拟研究。当β〜+与电子an灭时,会产生两个伽马,在PET扫描仪中产生LOR,而另一个伽马在散射检测器中散射时,会提供一个与上述LOR相交的康普顿锥。该交点表示在沿LOR的几毫米不确定范围内,β-γ衰减的起源。因此,可以限制图像重建算法使用的LOR的一部分。

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