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用于骨骼肌评估的先进磁共振成像技术。

Advanced MR imaging techniques for skeletal muscle evaluation.

作者信息

Noseworthy Michael D, Davis Andrew D, Elzibak Alyaa H

机构信息

Electrical and Computer Engineering, and School of Biomedical Engineering, McMaster University, Hamilton, Ontario, Canada.

出版信息

Semin Musculoskelet Radiol. 2010 Jun;14(2):257-68. doi: 10.1055/s-0030-1253166. Epub 2010 May 18.

Abstract

Diagnostic imaging procedures for muscle evaluation have typically provided basic information concerning gross anatomical change resulting from pathology. Up until recently the musculoskeletal radiologist has been fairly limited to using simple proton-density weighted fat-saturated and short tau inversion recovery magnetic resonance imaging scans for assessment of skeletal muscle. Recent advances, however, have resulted in development of newer scans and postprocessing methods that provide much more than gross muscle structure. Scans providing fine structure, muscle function, and metabolism can easily be done using clinical scanners. Here we describe how diffusion tensor imaging (DTI) and blood oxygenation level-dependent (BOLD) imaging together can provide detailed information on muscle structural and functional changes. DTI is useful for visualizing muscle tears, and BOLD can be used for vascular insufficiency (e.g., compartment syndrome). In clinical sites that are gaining experience using these techniques, imaging of muscle pathology is becoming increasingly thorough. In the future, these methods will reduce the need for invasive approaches to study muscle pathology.

摘要

用于肌肉评估的诊断成像程序通常提供有关病理导致的大体解剖变化的基本信息。直到最近,肌肉骨骼放射科医生在评估骨骼肌时,相当局限于使用简单的质子密度加权脂肪饱和和短反转时间反转恢复磁共振成像扫描。然而,最近的进展导致了更新的扫描和后处理方法的开发,这些方法提供的远不止是大体肌肉结构。使用临床扫描仪可以轻松完成提供精细结构、肌肉功能和代谢的扫描。在这里,我们描述了扩散张量成像(DTI)和血氧水平依赖(BOLD)成像如何共同提供有关肌肉结构和功能变化的详细信息。DTI有助于可视化肌肉撕裂,而BOLD可用于评估血管功能不全(如骨筋膜室综合征)。在越来越有经验使用这些技术的临床场所,对肌肉病理学的成像正变得越来越全面。未来,这些方法将减少研究肌肉病理学所需的侵入性方法。

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