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应用于肌硬膜桥复合体及其相关肌肉的磁共振成像:现状与未来展望。

Utilization of MR imaging in myodural bridge complex with relevant muscles: current status and future perspectives.

机构信息

The First Affiliated Hospital of Dalian Medical University, Department of Radiology, Dalian, P.R. China.

Department of Anatomy, College of Basic Medicine, Dalian Medical University, Dalian, P.R. China.

出版信息

J Musculoskelet Neuronal Interact. 2020 Sep 1;20(3):382-389.

Abstract

The aim of this study is to review and discuss the literature on the utilization of magnetic resonance imaging (MRI) in investigating the structure and feasible function of the myodural bridge complex (MDBC) with relevant muscles, which will be useful to understand the function of the MDB. The myodural bridge (MDB) is a soft tissue connective bridge that provides a fascial continuity between the musculature/ligament and cervical spinal dura mater (SDM) in the suboccipital areas. All of these involved structures are referred to as the MDBC. It would transfer tensile forces effectively from involved suboccipital muscles/ligament to SDM during head movement. Despite present achievements, its anatomic and functional role is still unclear. MRI enables not only visualization of ligaments, musculature and spinal dura with conventional TW, TW and PDW imaging, but also functional evaluation of MDBC with relevant muscles, such as muscles' fatty infiltration, cross-sectional area changes and injuries. Though some functional MRI techniques have not been used for the MDBC with relevant muscles now, these techniques have great potential to better understand function of MDBC including its suspected clinical role. MRI is likely the most powerful tool to study MDBC and relevant muscles with only limited exploration so far.

摘要

本研究旨在回顾和讨论磁共振成像(MRI)在研究肌硬膜桥复合体(MDBC)及其相关肌肉结构和可行功能中的应用文献,这将有助于理解 MDB 的功能。肌硬膜桥(MDB)是一种软组织连接桥,在枕下区域为肌肉/韧带和颈段硬脊膜(SDM)提供筋膜连续性。所有这些相关结构都被称为 MDBC。它可以在头部运动时有效地将张力从相关的枕下肌肉/韧带传递到 SDM。尽管目前已经取得了一些成果,但它的解剖和功能作用仍不清楚。MRI 不仅可以通过常规 TW、TW 和 PDW 成像来可视化韧带、肌肉和脊髓硬脊膜,还可以对 MDBC 及其相关肌肉进行功能评估,例如肌肉脂肪浸润、横截面积变化和损伤。尽管目前还没有将一些功能性 MRI 技术应用于 MDBC 及其相关肌肉,但这些技术具有很大的潜力,可以更好地了解 MDBC 的功能,包括其可疑的临床作用。MRI 可能是迄今为止研究 MDBC 及其相关肌肉的最强大工具,目前的探索还很有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4a8/7493449/50b7d2ddde6a/JMNI-20-382-g001.jpg

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