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Temporally targeted imaging method applied to ECG-gated computed tomography: preliminary phantom and in vivo experience.

机译:应用于ECG门控计算机体层摄影的临时靶向成像方法:初步体模和体内经验。

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RATIONALE AND OBJECTIVES: Existing cardiac imaging methods do not allow for improved temporal resolution when considering a targeted region of interest (ROI). The imaging method presented here enables improved temporal resolution for ROI imaging (namely, a reconstruction volume smaller than the complete field of view). Clinically, temporally targeted reconstruction would not change the primary means of reconstructing and evaluating images, but rather would enable the adjunct technique of ROI imaging, with improved temporal resolution compared with standard reconstruction ( approximately 20% smaller temporal scan window). In gated cardiac computed tomography (CT) scans improved temporal resolution directly translates into a reduction in motion artifacts for rapidly moving objects such as the coronary arteries. MATERIALS AND METHODS: Retrospectively electrocardiogram gated coronary angiography data from a 64-slice CT system were used. A motion phantom simulating the motion profile of a coronary artery was constructed and scanned. Additionally, an in vivo study was performed using a porcine model. Comparisons between the new reconstruction technique and the standard reconstruction are given for an ROI centered on the right coronary artery, and a pulmonary ROI. RESULTS: In both a well-controlled motion model and a porcine model results show a decrease in motion induced artifacts including motion blur and streak artifacts from contrast enhanced vessels within the targeted ROIs, as assessed through both qualitative and quantitative observations. CONCLUSION: Temporally targeted reconstruction techniques demonstrate the potential to reduce motion artifacts in coronary CT. Further study is warranted to demonstrate the conditions under which this technique will offer direct clinical utility. Improvement in temporal resolution for gated cardiac scans has implications for improving: contrast enhanced CT angiography, calcium scoring, and assessment of the pulmonary anatomy.
机译:理由和目的:现有的心脏成像方法在考虑目标感兴趣区域(ROI)时无法改善时间分辨率。此处介绍的成像方法可提高ROI成像的时间分辨率(即,重建体积小于整个视野)。在临床上,以时间为目标的重建不会改变重建和评估图像的主要手段,而是能够实现ROI成像的辅助技术,与标准重建相比,其时间分辨率更高(时间扫描窗口小20%)。在门控心脏计算机断层扫描(CT)扫描中,改进的时间分辨率可直接转化为运动对象(如冠状动脉等快速移动的对象)的运动减少。材料与方法:回顾性使用来自64层CT系统的心电图门控冠状动脉造影数据。构造并扫描了模拟冠状动脉运动轮廓的运动体模。另外,使用猪模型进行了体内研究。对于以右冠状动脉为中心的ROI和肺ROI,给出了新重建技术与标准重建之间的比较。结果:在定性和定量观察中,在控制良好的运动模型和猪模型中,结果均显示运动诱发的伪影减少,包括目标ROI内对比增强血管产生的运动模糊和条纹伪影。结论:临时靶向重建技术证明减少冠状动脉CT运动伪影的潜力。有必要做进一步的研究来证明这种技术将提供直接临床应用的条件。门控心脏扫描的时间分辨率的提高具有改善的意义:造影剂增强的CT血管造影,钙评分和肺部解剖结构评估。

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