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首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >A fast cardiac gamma camera with dynamic SPECT capabilities: Design, system validation and future potential
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A fast cardiac gamma camera with dynamic SPECT capabilities: Design, system validation and future potential

机译:具有动态SPECT功能的快速心脏伽玛照相机:设计,系统验证和未来潜力

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Purpose The goal of this study is to present the Discovery NM 530c (DNM), a cardiac SPECT camera, interfacing multi-pinhole collimators with solid-state modules, aiming at slashing acquisition time without jeopardizing quality. DNM resembles PET since it enables 3-D SPECT without detector motion. We further envision how these novel capabilities may help with current and future challenges of cardiac imaging. Methods DNM sensitivity, spatial resolution (SR) and energy resolution (ER), count rate response, cardiac uniformity and cardiac defect contrast were measured and compared to a dedicated cardiac, dual-head standard SPECT (S-SPECT) camera. Results DNM sensitivity was more than threefold higher while SR was notably better. Significantly, SR was the same for 99mTc and 201Tl. ER was improved on DNM and allowed good separation of 99mTc and 123I spectral peaks. Count rate remained linear on DNM up to 612 kcps, while S-SPECT showed severe dead time limitations. Phantom studies revealed comparable uniformity and defect contrast, notwithstanding significantly shorter acquisition time for the DNM. First patient images, including dynamic SPECT, are also presented. Conclusion DNM is raising the bar for expedition and upgrade of practice. It features high sensitivity as well as improved SR, temporal resolution and ER. It enables reduction of acquisition time and fast protocols. Importantly, it is potentially capable of dynamic 3-D acquisition. The new technology is potentially upgradeable and may become a milestone in the evolution of nuclear cardiology as it assumes its key role in molecular imaging of the heart.
机译:目的这项研究的目的是介绍一种发现型NM 530c(DNM),这是一种心脏SPECT相机,将多针孔准直仪与固态模块连接在一起,目的是在不影响质量的前提下缩短采集时间。 DNM类似于PET,因为它可以实现3-D SPECT,而无需检测器移动。我们进一步设想这些新颖的功能如何帮助心脏成像的当前和未来挑战。方法测量DNM灵敏度,空间分辨率(SR)和能量分辨率(ER),计数率响应,心脏均匀性和心脏缺陷对比度,并与专用的双头标准SPECT(S-SPECT)摄像机进行比较。结果DNM敏感性高出三倍以上,而SR则显着提高。显着地,对于99mTc和201T1,SR是相同的。 ER在DNM上得到了改善,可以很好地分离99mTc和123I光谱峰。在高达612 kcps的DNM上,计数速率保持线性,而S-SPECT显示出严重的死区时间限制。幻影研究显示,尽管DNM的采集时间明显缩短,但均匀度和缺陷对比度却相当。还显示了第一批患者图像,包括动态SPECT。结论DNM正在提高实践的考察和升级标准。它具有高灵敏度以及改进的SR,时间分辨率和ER。它可以减少采集时间和快速协议。重要的是,它具有潜在的动态3D采集能力。这项新技术具有潜在的可升级性,因为它在心脏分子成像中起着关键作用,因此可能成为核心脏病学发展的一个里程碑。

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