Department of Medicine, Cardiovascular Division, University of Virginia Health System, Charlottesville, Virginia.
Siemens Medical Solutions USA, Inc., Chicago, Illinois.
JACC Cardiovasc Imaging. 2019 Nov;12(11 Pt 2):2332-2344. doi: 10.1016/j.jcmg.2019.06.031. Epub 2019 Sep 18.
Myocardial native T1 and extracellular volume fraction (ECV) mapping have emerged as cardiac magnetic resonance biomarkers providing unique insight into cardiac pathophysiology. Single breath-hold acquisition techniques, available on clinical scanners across multiple vendor platforms, have made clinical T1 and ECV mapping a reality. Although the relationship between changes in native T1 and alterations in cardiac microstructure is complex, an understanding of how edema, blood volume, myocyte and interstitial expansion, lipids, and paramagnetic substances affect T1 and ECV can provide insight into how and why these parameters change in various cardiac pathologies. The goals of this state-of-the-art review will be to review factors influencing native T1 and ECV, to describe how native T1 and ECV are measured, to discuss potential challenges and pitfalls in clinical practice, and to describe new T1 mapping techniques on the horizon.
心肌固有 T1 和细胞外容积分数 (ECV) 图已成为心脏磁共振生物标志物,为心脏病理生理学提供了独特的见解。单屏息采集技术可在多个供应商平台的临床扫描仪上使用,使临床 T1 和 ECV 图成为现实。尽管固有 T1 的变化与心脏微结构的改变之间的关系很复杂,但了解水肿、血容量、心肌细胞和间质扩张、脂质和顺磁性物质如何影响 T1 和 ECV,可以深入了解这些参数在各种心脏病变中变化的方式和原因。本综述的目的将是回顾影响固有 T1 和 ECV 的因素,描述如何测量固有 T1 和 ECV,讨论临床实践中的潜在挑战和陷阱,并描述新的 T1 映射技术的前景。