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7T MRI 磁共振血管成像技术的进展:从微血管成像到功能血管成像。

Advances in MR angiography with 7T MRI: From microvascular imaging to functional angiography.

机构信息

Bioimaging Research Team, Division of Bioconvergence Analysis, Korea Basic Science Institute, Ochang, Cheongju, Republic of Korea.

Department of Radiological Science, Gachon University, Incheon, Republic of Korea.

出版信息

Neuroimage. 2018 Mar;168:269-278. doi: 10.1016/j.neuroimage.2017.01.019. Epub 2017 Jan 13.

Abstract

Over the past few decades, vascular flow-dependent imaging techniques have proven to be effective for the visualization of large vessel diseases. However, these approaches are unlikely to be efficacious for small vessels because the affected small vessels cannot always be visualized directly, owing to a lack of detection sensitivity. Recently, many researchers have introduced state-of-the-art imaging techniques to visualize cerebral microvessels using ultra-high-field (UHF) magnetic resonance angiography (MRA). They have demonstrated the superiority of UHF MRA, especially for visualization of the microvasculature compared with clinical MRA images using 1.5T or 3T magnetic resonance imaging (MRI). Thus, UHF MRA may become an important investigative tool for research, facilitating examinations of vascular mechanisms for small vessel diseases and contributing to the early detection of cerebrovascular diseases in clinics. Furthermore, new imaging methods for visualizing vascular dynamics or flow effects may help investigate brain functions, especially in conjunction with blood oxygenation level-dependent contrast functional MRI modalities, as well as situations in which small vessel abnormalities are clinically important. The present article reviews recent technological advances in UHF MRA, especially 7T MRA, and discusses the potential benefits and future directions of UHF MRA.

摘要

在过去的几十年中,血管血流依赖性成像技术已被证明可有效用于可视化大血管疾病。然而,由于缺乏检测灵敏度,这些方法对于小血管不太可能有效,因为受影响的小血管并不总是可以直接可视化。最近,许多研究人员引入了最先进的成像技术,通过超高场(UHF)磁共振血管造影(MRA)来可视化脑微血管。他们已经证明了 UHF MRA 的优越性,尤其是与使用 1.5T 或 3T 磁共振成像(MRI)的临床 MRA 图像相比,在可视化微血管方面的优越性。因此,UHF MRA 可能成为一种重要的研究工具,有助于研究小血管疾病的血管机制,并有助于在临床上早期发现脑血管疾病。此外,用于可视化血管动力学或血流效应的新成像方法可能有助于研究大脑功能,特别是与血氧水平依赖对比功能 MRI 模式结合使用时,以及在小血管异常在临床上很重要的情况下。本文综述了 UHF MRA,尤其是 7T MRA 的最新技术进展,并讨论了 UHF MRA 的潜在益处和未来方向。

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