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Technological Development and Advances in SPECT/CT

机译:SPECT / CT的技术发展与进步

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摘要

SPECT/CT has emerged over the past decade as a means of correlating anatomical information from CT with functional information from SPECT. The integration of SPECT and CT in a single imaging device facilitates anatomical localization of the radiopharmaceutical to differentiate physiological uptake from that associated with disease and patient-specific attenuation correction to improve the visual quality and quantitative accuracy of the SPECT image. The first clinically available SPECT/CT systems performed emission-transmission imaging using a dual-headed SPECT camera and a low-power x-ray CT sub-system. Newer SPECT/CT systems are available with high-power CT sub-systems suitable for detailed anatomical diagnosis, including CT coronary angiography and coronary calcification that can be correlated with myocardial perfusion measurements. The high-performance CT capabilities also offer the potential to improve compensation of partial volume errors for more accurate quantitation of radionuclide measurement of myocardial blood flow and other physiological processes and for radiation dosimetry for radionuclide therapy. In addition, new SPECT technologies are being developed that significantly improve the detection efficiency and spatial resolution for radionuclide imaging of small organs including the heart, brain, and breast, and therefore may provide new capabilities for SPECT/CT imaging in these important clinical applications.
机译:在过去的十年中,SPECT / CT作为一种将CT的解剖信息与SPECT的功能信息相关联的手段而出现。将SPECT和CT集成在单个成像设备中,有助于放射性药物的解剖学定位,以将生理摄取与与疾病和患者特定的衰减校正有关的生理摄取区分开,以改善SPECT图像的视觉质量和定量准确性。第一个临床上可用的SPECT / CT系统使用双头SPECT相机和低功率X射线CT子系统执行了发射-透射成像。较新的SPECT / CT系统提供了适用于详细解剖诊断的大功率CT子系统,包括可与心肌灌注测量相关的CT冠状动脉造影和冠状动脉钙化。高性能的CT功能还具有改善局部体积误差补偿的潜力,从而可以更准确地定量心肌血流和其他生理过程的放射性核素测量值,以及用于放射性核素治疗的放射剂量测定法。此外,正在开发新的SPECT技术,该技术可显着提高用于包括心脏,大脑和乳房在内的小器官的放射性核素成像的检测效率和空间分辨率,因此可为这些重要的临床应用提供SPECT / CT成像的新功能。

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