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心血管计算机断层扫描的未来:高级分析和临床见解。

The Future of Cardiovascular Computed Tomography: Advanced Analytics and Clinical Insights.

机构信息

Royal Brompton Hospital, London, United Kingdom.

Aarhus University Hospital, Aarhus Skejby, Denmark.

出版信息

JACC Cardiovasc Imaging. 2019 Jun;12(6):1058-1072. doi: 10.1016/j.jcmg.2018.11.037.

Abstract

Cardiovascular computed tomography (CCT) has undergone rapid maturation over the last decade and is now of proven clinical utility in the diagnosis and management of coronary artery disease, in guiding structural heart disease intervention, and in the diagnosis and treatment of congenital heart disease. The next decade will undoubtedly witness further advances in hardware and advanced analytics that will potentially see an increasingly core role for CCT at the center of clinical cardiovascular practice. In coronary artery disease assessment this may be via improved hemodynamic adjudication, and shear stress analysis using computational flow dynamics, more accurate and robust plaque characterization with spectral or photon-counting CT, or advanced quantification of CT data via artificial intelligence, machine learning, and radiomics. In structural heart disease, CCT is already pivotal to procedural planning with adjudication of gradients before and following intervention, whereas in congenital heart disease CCT is already used to support clinical decision making from neonates to adults, often with minimal radiation dose. In both these areas the role of computational flow dynamics, advanced tissue printing, and image modelling has the potential to revolutionize the way these complex conditions are managed, and CCT is likely to become an increasingly critical enabler across the whole advancing field of cardiovascular medicine.

摘要

心血管计算机断层扫描(CCT)在过去十年中经历了快速发展,现已被证明在冠状动脉疾病的诊断和治疗、结构性心脏病介入指导、先天性心脏病的诊断和治疗方面具有临床应用价值。未来十年,硬件和高级分析技术无疑将取得进一步进展,CCT 将在临床心血管实践中发挥越来越核心的作用。在冠状动脉疾病评估方面,这可能是通过血流动力学的改良评估、血流动力学的计算流体动力学分析、使用光谱或光子计数 CT 进行更准确和稳健的斑块特征分析、或通过人工智能、机器学习和放射组学对 CT 数据进行高级定量分析。在结构性心脏病中,CCT 已经在介入前后的梯度裁决中对手术规划起到关键作用,而在先天性心脏病中,CCT 已经用于支持从新生儿到成年人的临床决策,通常辐射剂量极小。在这两个领域,计算流体动力学、高级组织打印和图像建模的作用有可能彻底改变这些复杂疾病的治疗方式,CCT 很可能成为整个心血管医学领域不断发展的关键推动因素。

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