Nakajima Kenichi, Okuda Koichi, Momose Mitsuru, Matsuo Shinro, Kondo Chisato, Sarai Masayoshi, Shibutani Takayuki, Onoguchi Masahisa, Shimizu Takeshi, Vija A Hans
Department of Nuclear Medicine, Kanazawa University, 13-1 Takara-machi, Kanazawa, 920-8641, Japan.
Department of Physics, Kanazawa Medical University, Uchinada, Kahoku, Japan.
Ann Nucl Med. 2017 Nov;31(9):649-659. doi: 10.1007/s12149-017-1210-3. Epub 2017 Sep 22.
IQ·SPECT (Siemens Medical Solutions) is a solution for high-sensitivity and short-time acquisition imaging of the heart for a variable angle general purpose gamma camera. It consists of a multi-focal collimator, a cardio-centric orbit and advanced iterative reconstruction, modeling the image formation physics accurately. The multi-focal collimator enables distance-dependent enlargement of the center region while avoiding truncation at the edges. With the specified configuration and a cardio-centric orbit it can obtain a fourfold sensitivity increase for the heart at the center of the scan orbit. Since IQ·SPECT shows characteristic distribution patterns in the myocardium, appropriate acquisition and processing conditions are required, and normal databases are convenient for quantification of both normal and abnormal perfusion images. The use of prone imaging can be a good option when X-ray computed tomography (CT) is not available for attenuation correction. CT-based attenuation correction changes count distribution significantly in the inferior wall and around the apex, hence image interpretation training and additional use of normal databases are recommended. Recent reports regarding its technology, Japanese Society of Nuclear Medicine working group activities, and clinical studies using Tl and Tc-perfusion tracers in Japan are summarized.
IQ·SPECT(西门子医疗解决方案公司)是一种用于可变角度通用伽马相机进行心脏高灵敏度和短时间采集成像的解决方案。它由一个多焦点准直器、一个以心脏为中心的轨道和先进的迭代重建技术组成,能精确模拟图像形成物理过程。多焦点准直器可实现中心区域随距离的放大,同时避免边缘截断。采用特定配置和以心脏为中心的轨道,它在扫描轨道中心处可使心脏的灵敏度提高四倍。由于IQ·SPECT在心肌中呈现出特征性分布模式,因此需要合适的采集和处理条件,正常数据库便于对正常和异常灌注图像进行定量分析。当无法使用X射线计算机断层扫描(CT)进行衰减校正时,采用俯卧位成像可能是个不错的选择。基于CT的衰减校正会显著改变下壁和心尖周围的计数分布,因此建议进行图像解读培训并额外使用正常数据库。本文总结了近期关于其技术、日本核医学协会工作组活动以及日本使用铊和锝灌注示踪剂的临床研究报告。