Matsunari Ichiro
Division of Nuclear Medicine, Department of Radiology, Saitama Medical University Hospital, Saitama, Japan.
Ann Nucl Cardiol. 2024;10(1):59-63. doi: 10.17996/anc.24-00011. Epub 2024 Oct 31.
Despite recent developments in positron emission tomography technology, cardiac single photon emission computed tomography (SPECT) imaging continues to be the main stream of nuclear cardiology because of its high accessibility and wider clinical use. For SPECT imaging, cadmium-zinc telluride (CZT) based detectors have advantages over conventional Anger type detectors with more flexible camera design thanks to the small sized CZT detectors and high contrast imaging because of its high energy resolution. Approximately 15 years ago, CZT-based cardiac SPECT cameras became commercially available, resulting in great success in clinical practice. However, this was just the beginning of the CZT era. To date, CZT-based general purpose whole-body camera and 3 dimensional full-ring SPECT systems have been developed and become commercially available with promising initial results. Although there still are areas to be addressed before wider clinical use, the CZT-based technology may provide significant progresses in nuclear cardiology as new generation SPECT systems. Finally, newer materials for the semiconductor detectors are under investigation or development, suggesting that there will be more developments in cardiac SPECT technology.
尽管正电子发射断层扫描技术最近有所发展,但心脏单光子发射计算机断层扫描(SPECT)成像因其高可及性和更广泛的临床应用,仍然是核心脏病学的主流。对于SPECT成像,基于碲化镉锌(CZT)的探测器比传统的安杰尔型探测器具有优势,由于CZT探测器尺寸小,相机设计更灵活,并且由于其高能量分辨率,成像对比度高。大约15年前,基于CZT的心脏SPECT相机开始商业化,在临床实践中取得了巨大成功。然而,这仅仅是CZT时代的开端。迄今为止,基于CZT的通用全身相机和三维全环SPECT系统已经开发出来并商业化,初步结果令人鼓舞。尽管在更广泛的临床应用之前仍有一些领域需要解决,但基于CZT的技术作为新一代SPECT系统,可能会在核心脏病学领域取得重大进展。最后,用于半导体探测器的新材料正在研究或开发中,这表明心脏SPECT技术将会有更多的发展。