Department of Radiology, Nippon Medical School, Musashi Kosugi Hospital.
Department of Radiology, Nippon Medical School.
Magn Reson Med Sci. 2022 Mar 1;21(2):293-308. doi: 10.2463/mrms.rev.2021-0137. Epub 2022 Feb 19.
Most cardiac diseases cause a non-physiological blood flow pattern known as turbulence around the heart and great vessels, which further worsen the disease itself. However, there is no consensus on how blood flow can be defined in disease conditions. Especially, in the left atrium, the fact that vortex flow already exists makes this debate more complicated. 3D time-resolved phase-contrast (4D flow) MRI is expected to be able to capture blood flow patterns from multiple aspects, such as blood flow velocity, stasis, and vortex quantification. Previous studies have confirmed that physiological vortex flow is predominantly induced by the higher-volume flow from the superior left pulmonary vein. In atrial fibrillation, 4D flow MRI reveals a non-physiological blood flow pattern, which information may add value to well-established clinical risk factors. Currently, the research target of LA analysis has also widened to lung surgeons, pulmonary vein stump thrombosis after left upper lobectomy. 4D flow MRI is expected to be utilized for many more variable diseases that are currently unimaginable.
大多数心脏疾病会导致非生理性的血流模式,即在心脏和大血管周围产生湍流,这进一步加重了疾病本身。然而,对于在疾病状态下如何定义血流,目前还没有共识。特别是在左心房,由于已经存在涡流流,这使得这场争论更加复杂。三维时间分辨相位对比(4D 流)MRI 有望能够从多个方面捕捉血流模式,如血流速度、停滞和涡流量化。先前的研究已经证实,生理涡流流主要是由来自左上肺静脉的较高容量的血流引起的。在心房颤动中,4D 流 MRI 揭示了一种非生理性的血流模式,这些信息可能会为已确立的临床危险因素增加价值。目前,LA 分析的研究目标也扩大到了肺外科医生,左上肺叶切除术后肺静脉残端血栓形成。4D 流 MRI 有望应用于目前难以想象的更多种多变的疾病。