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SPECT 心肌灌注成像的最新进展和未来前景。

Recent developments and future prospects of SPECT myocardial perfusion imaging.

机构信息

Karachi Institute of Radiotherapy and Nuclear Medicine, Karachi, Pakistan.

出版信息

Ann Nucl Med. 2010 Oct;24(8):565-9. doi: 10.1007/s12149-010-0400-z. Epub 2010 Jul 23.

Abstract

Myocardial perfusion SPECT imaging is the most commonly performed functional imaging for assessment of coronary artery disease. High diagnostic accuracy and incremental prognostic value are the major benefits while suboptimal spatial resolution and significant radiation exposure are the main limitations. Its ability to detect hemodynamic significance of lesions seen on multidetector CT angiogram (MDCTA) has paved the path for a successful marriage between anatomical and functional imaging modalities in the form of hybrid SPECT/MDCTA system. In recent years, there have been enormous efforts by industry and academia to develop new SPECT imaging systems with better sensitivity, resolution, compact design and new reconstruction algorithms with ability to improve image quality and resolution. Furthermore, expected arrival of Tc-99m-labeled deoxyglucose in next few years would further strengthen the role of SPECT in imaging hibernating myocardium. In view of these developments, it seems that SPECT would enjoy its pivotal role in spite of major threat to be replaced by fluorine-18-labeled positron emission tomography perfusion and glucose metabolism imaging agents.

摘要

心肌灌注 SPECT 成像(单光子发射计算机断层扫描)是评估冠状动脉疾病最常用的功能成像方法。高诊断准确性和附加预后价值是其主要优势,而空间分辨率不理想和辐射暴露大是其主要局限性。它能够检测多排 CT 血管造影(MDCTA)上所见病变的血流动力学意义,为解剖学和功能成像方式的成功联姻铺平了道路,形成了 SPECT/MDCTA 混合系统。近年来,行业和学术界都在努力开发新的 SPECT 成像系统,这些系统具有更高的灵敏度、分辨率、紧凑的设计和新的重建算法,能够提高图像质量和分辨率。此外,预计在未来几年内,Tc-99m 标记的脱氧葡萄糖将投入使用,这将进一步加强 SPECT 在冬眠心肌成像中的作用。鉴于这些发展,SPECT 似乎将发挥其关键作用,尽管氟-18 标记的正电子发射断层扫描灌注和葡萄糖代谢成像剂可能会对其构成重大威胁。

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