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正电子发射断层扫描(PET)和单光子发射计算机断层扫描(SPECT)的物理属性、局限性和未来潜力。

Physical attributes, limitations, and future potential for PET and SPECT.

机构信息

Department of Radiology and Imaging Sciences, Emory University, Atlanta, GA, USA.

出版信息

J Nucl Cardiol. 2012 Feb;19 Suppl 1:S19-29. doi: 10.1007/s12350-011-9488-3.

DOI:10.1007/s12350-011-9488-3
PMID:22160631
Abstract

Advances in SPECT and PET imaging hardware, software, and radiotracers are vastly improving the non-invasive evaluation of myocardial perfusion and function. In contrast to traditional dual-headed, sodium iodide crystal and photomultiplier cameras with mechanical collimators, new SPECT camera designs utilize novel, collimators, and solid-state detectors that convert photons directly to electrical signals. These cameras simultaneously collect data from as many as 76 small detectors narrowly focused on the heart. New noise regularization and resolution recovery/noise reduction reconstruction software interprets emitted counts more efficiently and thus more effectively discriminates between useful signals and noise. As a result, shorter acquisition times and/or lower tracer doses produce higher quality SPECT images than were possible before. PET perfusion imaging has benefitted from the introduction of novel detectors that now allow true 3D imaging, new radiopharmaceuticals, and precise attenuation correction (AC). These developments have resulted in perfusion images with higher spatial and contrast resolution that may be acquired in shorter protocols and/or with less patient radiation exposure than traditional SPECT. Hybrid SPECT/CT and PET/CT cameras utilize transmission computed tomographic (CT) scans for AC, and offer the additional clinical advantages of evaluating coronary calcium, myocardial anatomy (including non-invasive CT angiography), myocardial function, and myocardial perfusion in a single imaging procedure.

摘要

SPECT 和 PET 成像硬件、软件和放射性示踪剂的进步正在极大地改善心肌灌注和功能的非侵入性评估。与传统的双探头、碘化钠晶体和光电倍增管相机与机械准直器相比,新型 SPECT 相机设计采用了新颖的准直器和固态探测器,可将光子直接转换为电信号。这些相机可以同时从多达 76 个狭窄聚焦于心脏的小探测器中收集数据。新的噪声正则化和分辨率恢复/噪声降低重建软件更有效地解释发射计数,从而更有效地区分有用信号和噪声。因此,与以前相比,较短的采集时间和/或较低的示踪剂剂量可产生更高质量的 SPECT 图像。新型探测器的引入使 PET 灌注成像受益,这些探测器现在可以实现真正的 3D 成像、新型放射性药物和精确的衰减校正 (AC)。这些发展导致灌注图像具有更高的空间和对比度分辨率,与传统的 SPECT 相比,可在更短的方案中获得,或者患者的辐射暴露更少。SPECT/CT 和 PET/CT 混合相机利用透射计算机断层扫描 (CT) 扫描进行 AC,并提供额外的临床优势,可在单次成像过程中评估冠状动脉钙、心肌解剖结构(包括非侵入性 CT 血管造影)、心肌功能和心肌灌注。

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