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肌肉的磁共振成像生物标志物。

Magnetic Resonance Imaging Biomarkers of Muscle.

机构信息

Department of Physics, San Diego State University, San Diego, CA 92182, USA.

Muscle Imaging and Modeling Lab., Department of Radiology, University of California at San Diego, San Diego, CA 92037, USA.

出版信息

Tomography. 2024 Sep 2;10(9):1411-1438. doi: 10.3390/tomography10090106.

Abstract

This review is focused on the current status of quantitative MRI (qMRI) of skeletal muscle. The first section covers the techniques of qMRI in muscle with the focus on each quantitative parameter, the corresponding imaging sequence, discussion of the relation of the measured parameter to underlying physiology/pathophysiology, the image processing and analysis approaches, and studies on normal subjects. We cover the more established parametric mapping from T1-weighted imaging for morphometrics including image segmentation, proton density fat fraction, T2 mapping, and diffusion tensor imaging to emerging qMRI features such as magnetization transfer including ultralow TE imaging for macromolecular fraction, and strain mapping. The second section is a summary of current clinical applications of qMRI of muscle; the intent is to demonstrate the utility of qMRI in different disease states of the muscle rather than a complete comprehensive survey.

摘要

这篇综述专注于骨骼肌肉的定量磁共振成像(qMRI)的现状。第一部分涵盖了肌肉 qMRI 的技术,重点介绍了每个定量参数、相应的成像序列、所测参数与潜在生理学/病理生理学的关系、图像处理和分析方法,以及正常受试者的研究。我们涵盖了从 T1 加权成像的更成熟的参数映射,用于形态计量学,包括图像分割、质子密度脂肪分数、T2 映射和弥散张量成像,到新兴的 qMRI 特征,如包括用于大分子分数的超低 TE 成像的磁化传递,以及应变映射。第二部分总结了肌肉 qMRI 的当前临床应用;目的是展示 qMRI 在肌肉不同疾病状态下的实用性,而不是全面综合调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a0b/11436019/e7f85beff5c4/tomography-10-00106-g001.jpg

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