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在 14T 超高磁场下对皮质骨进行微米分辨率成像。

Micron-resolution Imaging of Cortical Bone under 14 T Ultrahigh Magnetic Field.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, 310027, China.

Department of Rehabilitation, Sir Run Run Shaw Hospital, College of Medicine, Zhejiang University, Hangzhou, 310016, China.

出版信息

Adv Sci (Weinh). 2023 Aug;10(24):e2300959. doi: 10.1002/advs.202300959. Epub 2023 Jun 20.

Abstract

Compact, mineralized cortical bone tissues are often concealed on magnetic resonance (MR) images. Recent development of MR instruments and pulse techniques has yielded significant advances in acquiring anatomical and physiological information from cortical bone despite its poor H signals. This work demonstrates the first MR research on cortical bones under an ultrahigh magnetic field of 14 T. The H signals of different mammalian species exhibit multi-exponential decays of three characteristic T or T * values: 0.1-0.5 ms, 1-4 ms, and 4-8 ms. Systematic sample comparisons attribute these T /T * value ranges to collagen-bound water, pore water, and lipids, respectively. Ultrashort echo time (UTE) imaging under 14 T yielded spatial resolutions of 20-80 microns, which resolves the 3D anatomy of the Haversian canals. The T * relaxation characteristics further allow spatial classifications of collagen, pore water and lipids in human specimens. The study achieves a record of the spatial resolution for MR imaging in bone and shows that ultrahigh-field MR has the unique ability to differentiate the soft and organic compartments in bone tissues.

摘要

皮质骨组织通常在磁共振(MR)图像中难以观察到。尽管皮质骨的 H 信号较弱,但最近 MR 仪器和脉冲技术的发展使得从皮质骨中获取解剖学和生理学信息取得了重大进展。本工作展示了在 14 T 的超高磁场下对皮质骨进行的首次磁共振研究。不同哺乳动物物种的 H 信号表现出三个特征 T 或 T * 值的多指数衰减:0.1-0.5 ms、1-4 ms 和 4-8 ms。系统的样本比较将这些 T/T * 值范围分别归因于与胶原蛋白结合的水、孔内水和脂质。在 14 T 下进行的超短回波时间(UTE)成像可获得 20-80 微米的空间分辨率,可解析哈弗斯管的 3D 解剖结构。T * 弛豫特性进一步允许对人体标本中的胶原蛋白、孔内水和脂质进行空间分类。该研究实现了骨磁共振成像空间分辨率的记录,并表明超高场 MR 具有独特的能力来区分骨组织中的软组织结构和有机成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4de1/10460861/26ebbc0c200e/ADVS-10-2300959-g003.jpg

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