Making the invisible visible—ultrashort echo time magnetic resonance imaging: Technical developments and applications

磁共振成像 核磁共振 白质 脊髓 物理 医学 放射科 精神科
作者
Yajun Ma,Hyungseok Jang,Saeed Jerban,Eric Y. Chang,Christine B. Chung,Graeme M. Bydder,Jiang Du
出处
期刊:Applied physics reviews [American Institute of Physics]
卷期号:9 (4) 被引量:26
标识
DOI:10.1063/5.0086459
摘要

Magnetic resonance imaging (MRI) uses a large magnetic field and radio waves to generate images of tissues in the body. Conventional MRI techniques have been developed to image and quantify tissues and fluids with long transverse relaxation times (T2s), such as muscle, cartilage, liver, white matter, gray matter, spinal cord, and cerebrospinal fluid. However, the body also contains many tissues and tissue components such as the osteochondral junction, menisci, ligaments, tendons, bone, lung parenchyma, and myelin, which have short or ultrashort T2s. After radio frequency excitation, their transverse magnetizations typically decay to zero or near zero before the receiving mode is enabled for spatial encoding with conventional MR imaging. As a result, these tissues appear dark, and their MR properties are inaccessible. However, when ultrashort echo times (UTEs) are used, signals can be detected from these tissues before they decay to zero. This review summarizes recent technical developments in UTE MRI of tissues with short and ultrashort T2 relaxation times. A series of UTE MRI techniques for high-resolution morphological and quantitative imaging of these short-T2 tissues are discussed. Applications of UTE imaging in the musculoskeletal, nervous, respiratory, gastrointestinal, and cardiovascular systems of the body are included.

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