首页> 外文期刊>The International Journal of Cardiovascular Imaging >Prediction of coronary artery plaque progression and potential rupture from 320-detector row prospectively ECG-gated single heart beat CT angiography: Lattice Boltzmann evaluation of endothelial shear stress
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Prediction of coronary artery plaque progression and potential rupture from 320-detector row prospectively ECG-gated single heart beat CT angiography: Lattice Boltzmann evaluation of endothelial shear stress

机译:通过320个探测器行前瞻性ECG门控单次心跳CT血管造影术预测冠状动脉斑块进展和潜在破裂:格子切尔兹曼(Lattice Boltzmann)评估内皮剪切应力

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摘要

Advances in MDCT will extend coronary CTA beyond the morphology data provided by systems that use 64 or fewer detector rows. Newer coronary CTA technology such as prospective ECG-gating will also enable lower dose examinations. Since the current standard of care for coronary diagnoses is catheterization, CT will continue to be benchmarked against catheterization reference points, in particular temporal resolution, spatial resolution, radiation dose, and volume coverage. This article focuses on single heart beat cardiac acquisitions enabled by 320-detector row CT. Imaging with this system can now be performed with patient radiation doses comparable to catheterization. The high image quality, excellent contrast opacification, and absence of stair-step artifact provide the potential to evaluate endothelial shear stress (ESS) noninvasively with CT. Low ESS is known to lead to the development and progression of atherosclerotic plaque culminating in high-risk vulnerable plaque likely to rupture and cause an acute coronary event. The magnitude of local low ESS, in combination with the local remodeling response and the severity of systemic risk factors, determines the natural history of each plaque. This paper describes the steps required to derive an ESS map from 320-detector row CT data using the Lattice Boltzmann method to include the complex geometry of the coronary arterial tree. This approach diminishes the limitations of other computational fluid dynamics methods to properly evaluate multiple coronary arteries, including the complex geometry of coronary bifurcations where lesions tend to develop.
机译:MDCT的进展将使冠状动脉CTA扩展到使用64个或更少的探测器行的系统提供的形态学数据之外。较新的冠状动脉CTA技术(例如前瞻性ECG门控)也可以实现更低剂量的检查。由于目前用于冠状动脉诊断的护理标准是导管插入术,因此CT将继续以导管插入术参考点为基准,尤其是时间分辨率,空间分辨率,辐射剂量和体积覆盖率。本文重点介绍由320个探测器行CT实现的单次心跳心脏采集。现在,可以用与导管插入术相当的患者放射剂量执行该系统的成像。高质量的图像,出色的对比度浑浊和不存在阶梯状伪影,为利用CT非侵入性评估内皮切应力(ESS)提供了潜力。已知低ESS会导致动脉粥样硬化斑块的发展和进展,最终导致高风险易碎斑块破裂,并可能导致急性冠状动脉事件。局部低ESS的强度,结合局部重塑反应和系统性危险因素的严重程度,决定了每个斑块的自然病史。本文介绍了使用莱迪思·玻耳兹曼(Lattice Boltzmann)方法从320个探测器的行CT数据中获取ESS映射所需的步骤,以包括冠状动脉树的复杂几何形状。这种方法减少了其他计算流体动力学方法来正确评估多个冠状动脉的局限性,包括病变易于发展的复杂的冠状动脉分支的几何形状。

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    Applied Imaging Science Laboratory Department of Radiology Brigham and Women’s Hospital Harvard Medical School 75 Francis Street Boston MA 02115 USA;

    Department of Physics Harvard University Cambridge MA USA;

    Applied Imaging Science Laboratory Department of Radiology Brigham and Women’s Hospital Harvard Medical School 75 Francis Street Boston MA 02115 USA;

    Cardiovascular Division Department of Medicine Brigham and Women’s Hospital Harvard Medical School Boston MA USA;

    Applied Imaging Science Laboratory Department of Radiology Brigham and Women’s Hospital Harvard Medical School 75 Francis Street Boston MA 02115 USA;

    Applied Imaging Science Laboratory Department of Radiology Brigham and Women’s Hospital Harvard Medical School 75 Francis Street Boston MA 02115 USA;

    Applied Imaging Science Laboratory Department of Radiology Brigham and Women’s Hospital Harvard Medical School 75 Francis Street Boston MA 02115 USA;

    Cardiovascular Division Department of Medicine Brigham and Women’s Hospital Harvard Medical School Boston MA USA;

    Istituto Applicazioni Calcolo CNR Rome Italy;

    Department of Physics Harvard University Cambridge MA USA;

    School of Engineering and Applied Science Harvard University Cambridge MA USA;

    School of Engineering and Applied Science Harvard University Cambridge MA USA;

    Initiative in Innovative Computing Harvard University Cambridge MA USA;

    Cardiovascular Division Department of Medicine Brigham and Women’s Hospital Harvard Medical School Boston MA USA;

    Cardiovascular Division Department of Medicine Brigham and Women’s Hospital Harvard Medical School Boston MA USA;

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  • 正文语种 eng
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  • 关键词

    Computed tomography; Shear stress; Atherosclerosis; Coronary disease; Vascular remodeling;

    机译:计算机体层摄影术;剪应力;动脉粥样硬化;冠心病;血管重塑;

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