磁共振成像
扫描仪
模态(人机交互)
脉搏(音乐)
脉冲序列
计算机科学
实时核磁共振成像
核医学
生物医学工程
医学物理学
放射科
医学
人工智能
电信
探测器
作者
Pengfei Xu,Thomas Meersmann,Jing Wang,Chengbo Wang
摘要
Abstract Oxygen‐enhanced MR imaging (OE‐MRI) is a special proton imaging technique that can be performed without modifying the scanner hardware. Many fundamental studies have been conducted following the initial reporting of this technique in 1996, illustrating the high potential for its clinical application. This review aims to summarise and analyse current pulse sequences and T 1 measurement methods for OE‐MRI, including fundamental theories, existing pulse sequences applied to OE‐MRI acquisition and T 1 mapping. Wash‐in and wash‐out time identify lung function and are sensitive to ventilation; thus, dynamic OE‐MRI is also discussed in this review. We compare OE‐MRI with the primary competitive technique, hyperpolarised gas MRI. Finally, an overview of lower‐field applications of OE‐MRI is highlighted, as relatively recent publications demonstrated positive results. Lower‐field OE‐MRI, which is lower than 1.5 T, could be an alternative modality for detecting lung diseases. This educational review is aimed at researchers who want a quick summary of the steps needed to perform pulmonary OE‐MRI with a particular focus on sequence design, settings, and quantification methods.
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