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Positron Emission Tomography: Current Challenges and Opportunities for Technological Advances in Clinical and Preclinical Imaging Systems

机译:正电子发射断层扫描:当前临床和临床前成像系统技术进步的当前挑战和机遇

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Positron emission tomography (PET) imaging is based on detecting two time-coincident high-energy photons from the emission of a positronemitting radioisotope. The physics of the emission, and the detection of the coincident photons, give PET imaging unique capabilities for both very high sensitivity and accurate estimation of the in vivo concentration of the radiotracer. PET imaging has been widely adopted as an important clinical modality for oncological, cardiovascular, and neurological applications. PET imaging has also become an important tool in preclinical studies, particularly for investigating murine models of disease and other small-animal models. However, there are several challenges to using PET imaging systems. These include the fundamental trade-offs between resolution and noise, the quantitative accuracy of the measurements, and integration with X-ray computed tomography and magnetic resonance imaging. In this article, we review how researchers and industry are addressing these challenges.
机译:正电子发射断层扫描(PET)成像基于检测来自红细胞放射性同位素的发射的两个时间重合的高能量光子。发射的物理和重合光子的检测,给予PET成像独特的能力,以非常高的敏感性和准确估计的放射性机构的体内浓度。宠物成像已被广泛采用肿瘤,心血管和神经应用的重要临床模态。宠物成像也成为临床前研究的重要工具,特别是针对调查疾病和其他小动物模型的小鼠模型。然而,使用宠物成像系统存在几个挑战。其中包括分辨率和噪声之间的基本折衷,测量的定量精度以及与X射线计算机断层扫描和磁共振成像的集成。在本文中,我们审查了研究人员和行业如何解决这些挑战。

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