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Noninvasive FFR derived from coronary CT angiography in the management of coronary artery disease: technology and clinical update

机译:冠状动脉CT血管造影术衍生的无创FFR在冠心病管理中的技术和临床更新

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摘要

After a decade of clinical use of coronary computed tomographic angiography (CCTA) to evaluate the anatomic severity of coronary artery disease, new methods of deriving functional information from CCTA have been developed. These methods utilize the anatomic information provided by CCTA in conjunction with computational fluid dynamics to calculate fractional flow reserve (FFR) values from CCTA image data sets. Computed tomography-derived FFR (CT-FFR) enables the identification of lesion-specific drop noninvasively. A three-dimensional CT-FFR modeling technique, which provides FFR values throughout the coronary tree (HeartFlow FFRCT analysis), has been validated against measured FFR and is now approved by the US Food and Drug Administration for clinical use. This technique requires off-site supercomputer analysis. More recently, a one-dimensional computational analysis technique (Siemens cFFR), which can be performed on on-site workstations, has been developed and is currently under investigation. This article reviews CT-FFR technology and clinical evidence for its use in stable patients with suspected coronary artery disease.
机译:经过十年临床应用冠状动脉计算机断层血管造影术(CCTA)评估冠状动脉疾病的解剖学严重程度,已经开发了从CCTA提取功能信息的新方法。这些方法利用CCTA提供的解剖信息以及计算流体动力学来从CCTA图像数据集计算分流储备(FFR)值。计算机断层扫描衍生的FFR(CT-FFR)能够无创地识别病变特异性下降。三维CT-FFR建模技术可在整个冠状动脉树中提供FFR值(HeartFlow FFRCT分析),已针对测量的FFR进行了验证,目前已获得美国食品和药物管理局的批准,可用于临床。此技术需要异地超级计算机分析。最近,已经开发了可以在现场工作站上执行的一维计算分析技术(Siemens cFFR),目前正在研究中。本文回顾了CT-FFR技术及其在可疑冠心病患者中的应用的临床证据。

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