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心脏磁共振心动图学:实用指南。

Diastology with Cardiac MRI: A Practical Guide.

机构信息

From the Departments of Radiology (P.S.R., C.J.F.) and Cardiology (V.A., N.K.), Mayo Clinic, 200 1st St SW, Rochester, MN 55905; Department of Radiology, Baylor Health System, Dallas, Tex (A.M.); Department of Radiology, Hospital San Juan de Dios, Hospital de la Cruz Roja, HT-RESALTA, HT Médica, Córdoba, Spain (J.B.); Department of Cardiology, Houston Methodist Hospital, Houston, Tex (D.J.S.); and Cardiovascular Imaging Laboratory, Cleveland Clinic Foundation, Cleveland, Ohio (S.D.F.).

出版信息

Radiographics. 2023 Aug;43(9):e220144. doi: 10.1148/rg.220144.

Abstract

Diastolic filling of the ventricle is a complex interplay of volume and pressure, contingent on active energy-dependent myocardial relaxation and myocardial stiffness. Abnormal diastolic function is the hallmark of the clinical entity of heart failure with preserved ejection fraction (HFpEF), which is now the dominant type of heart failure and is associated with significant morbidity and mortality. Although echocardiography is the current first-line imaging modality used in evaluation of diastolic function, cardiac MRI (CMR) is emerging as an important technique. The principal role of CMR is to categorize the cause of diastolic dysfunction (DD) and distinguish other entities that manifest similarly to HFpEF, particularly infiltrative and pericardial disorders. CMR also provides prognostic information and risk stratification based on late gadolinium enhancement and parametric mapping techniques. Advances in hardware, sequences, and postprocessing software now enable CMR to diagnose and grade DD accurately, a role traditionally assigned to echocardiography. Two-dimensional or four-dimensional velocity-encoded phase-contrast sequences can measure flow and velocities at the mitral inflow, mitral annulus, and pulmonary veins to provide diastolic functional metrics analogous to those at echocardiography. The commonly used cine steady-state free-precession sequence can provide clues to DD including left ventricular mass, left ventricular filling curves, and left atrial size and function. MR strain imaging provides information on myocardial mechanics that further aids in diagnosis and prognosis of diastolic function. Research sequences such as MR elastography and MR spectroscopy can help evaluate myocardial stiffness and metabolism, respectively, providing additional insights on diastolic function. The authors review the physiology of diastolic function, mechanics of diastolic heart failure, and CMR techniques in the evaluation of diastolic function. RSNA, 2023 Quiz questions for this article are available in the supplemental material.

摘要

心室舒张充盈是一个复杂的容积和压力相互作用的过程,取决于主动的、能量依赖的心肌弛豫和心肌僵硬度。舒张功能障碍是射血分数保留的心力衰竭(HFpEF)这一临床实体的标志,HFpEF 现在是心力衰竭的主要类型,与较高的发病率和死亡率相关。尽管超声心动图是目前评估舒张功能的一线影像学方式,但心脏磁共振(CMR)正成为一种重要的技术。CMR 的主要作用是对舒张功能障碍(DD)的病因进行分类,并区分表现类似于 HFpEF 的其他实体,特别是浸润性和心包疾病。CMR 还可以提供预后信息和风险分层,这基于钆延迟增强和参数图技术。硬件、序列和后处理软件的进步现在使 CMR 能够准确诊断和分级 DD,这一角色传统上由超声心动图承担。二维或四维速度编码相位对比序列可测量二尖瓣流入道、二尖瓣环和肺静脉的血流和速度,提供类似于超声心动图的舒张功能指标。常用的电影稳态自由进动序列可以提供 DD 的线索,包括左心室质量、左心室充盈曲线以及左心房大小和功能。MR 应变成像提供心肌力学的信息,这进一步有助于舒张功能的诊断和预后。研究序列,如 MR 弹性成像和 MR 波谱,可以帮助评估心肌僵硬度和代谢,分别提供对舒张功能的额外了解。作者回顾了舒张功能的生理学、舒张性心力衰竭的力学以及 CMR 技术在舒张功能评估中的应用。RSNA,2023 本文的问答测验可在补充材料中获取。

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