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Motion Correction for Improving the Accuracy of Dual-Energy Myocardial Perfusion CT Imaging

机译:运动校正可提高双能心肌灌注CT成像的准确性

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Coronary Artery Disease (CAD) is the leading cause of death globally. Modern cardiac computed tomography angiography (CCTA) is highly effective at identifying and assessing coronary blockages associated with CAD. The diagnostic value of this anatomical information can be substantially increased in combination with a non-invasive, low-dose, correlative, quantitative measure of blood supply to the myocardium. While CT perfusion has shown promise of providing such indications of ischemia, artifacts due to motion, beam hardening, and other factors confound clinical findings and can limit quantitative accuracy. In this paper, we investigate the impact of applying a novel motion correction algorithm to correct for motion in the myocardium. This motion compensation algorithm (originally designed to correct for the motion of the coronary arteries in order to improve CCTA images) has been shown to provide substantial improvements in both overall image quality and diagnostic accuracy of CCTA. We have adapted this technique for application beyond the coronary arteries and present an assessment of its impact on image quality and quantitative accuracy within the context of dual-energy CT perfusion imaging. We conclude that motion correction is a promising technique that can help foster the routine clinical use of dual-energy CT perfusion. When combined, the anatomical information of CCTA and the hemodynamic information from dual-energy CT perfusion should facilitate better clinical decisions about which patients would benefit from treatments such as stent placement, drug therapy, or surgery and help other patients avoid the risks and costs associated with unnecessary, invasive, diagnostic coronary angiography procedures.
机译:冠状动脉疾病(CAD)是全球主要的死亡原因。现代心脏计算机断层造影血管造影(CCTA)在识别和评估与CAD相关的冠状动脉阻塞方面非常有效。与无创,低剂量,相关,定量的心肌供血量相结合,可以大大提高此解剖信息的诊断价值。尽管CT灌注显示了提供缺血迹象的希望,但是由于运动,束硬化和其他因素造成的伪影会混淆临床发现,并可能限制定量准确性。在本文中,我们研究了应用新颖的运动校正算法来校正心肌运动的影响。这种运动补偿算法(最初设计用于校正冠状动脉的运动,以改善CCTA图像)已显示出可显着改善CCTA的整体图像质量和诊断准确性。我们已经将该技术用于冠状动脉以外的应用,并在双能CT灌注成像的背景下评估了其对图像质量和定量准确性的影响。我们得出结论,运动校正是一种有前途的技术,可以帮助促进双能CT灌注的常规临床使用。结合使用CCTA的解剖学信息和来自双能CT灌注的血流动力学信息,应有助于更好的临床决策,即哪些患者将从支架置入,药物治疗或手术等治疗中受益,并帮助其他患者规避相关的风险和成本进行不必要的,有创的,诊断性的冠状动脉造影程序

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