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通过质子磁共振波谱对肌肉骨骼肿瘤进行分子特征分析。

Molecular characterization of musculoskeletal tumors by proton MR spectroscopy.

作者信息

Fayad Laura M, Barker Peter B, Bluemke David A

机构信息

Department of Radiology and Orthopaedic Surgery, Johns Hopkins Medical Institutions, Baltimore, Maryland 21287, USA.

出版信息

Semin Musculoskelet Radiol. 2007 Sep;11(3):240-5. doi: 10.1055/s-2008-1038313.

Abstract

Although conventional magnetic resonance (MR) imaging with T1, T2, and gadolinium enhancement is the primary modality used for characterizing musculoskeletal lesions, its specificity for distinguishing malignancy from nonmalignant tissue remains low. Proton MR spectroscopy (MRS) is a new approach to the evaluation of musculoskeletal lesions that offers a method of metabolic imaging with MR. With proton MRS, a footprint of metabolite concentration in a region of interest can be obtained and markers for malignancy can be detected, such as elevated concentrations of the metabolite choline. Proton MRS is one of the most promising noninvasive techniques available for molecular identification of malignant tumor markers. However, the role of MRS in the assessment of musculoskeletal tumors remains in its infancy. In this article, we discuss the technical aspects of performing proton MRS, including differences between single voxel and multivoxel technique and its advantages and limitations. We demonstrate its potential utility in the evaluation of musculoskeletal lesions through a series of examples.

摘要

尽管采用T1、T2和钆增强的传统磁共振(MR)成像,是用于表征肌肉骨骼病变的主要方式,但其区分恶性组织与非恶性组织的特异性仍然较低。质子磁共振波谱(MRS)是评估肌肉骨骼病变的一种新方法,它提供了一种利用MR进行代谢成像的方法。通过质子MRS,可以获得感兴趣区域内代谢物浓度的特征图谱,并能检测到恶性肿瘤的标志物,如代谢物胆碱浓度升高。质子MRS是目前最有前景的用于分子鉴定恶性肿瘤标志物的非侵入性技术之一。然而,MRS在肌肉骨骼肿瘤评估中的作用仍处于起步阶段。在本文中,我们讨论了进行质子MRS的技术方面,包括单体素和多体素技术的差异及其优缺点。我们通过一系列实例展示了其在评估肌肉骨骼病变中的潜在效用。

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