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CMR 在炎症性血管炎中的应用。

CMR in inflammatory vasculitis.

机构信息

The Ohio State University, 473 W, 12th Ave, Suite 200, Columbus, OH 43210, USA.

出版信息

J Cardiovasc Magn Reson. 2012 Nov 30;14(1):82. doi: 10.1186/1532-429X-14-82.

Abstract

Vasculitis, the inflammation of blood vessels, can produce devastating complications such as blindness, renal failure, aortic rupture and heart failure through a variety of end-organ effects. Noninvasive imaging with cardiovascular magnetic resonance (CMR) has contributed to improved and earlier diagnosis. CMR may also be used in serial evaluation of such patients as a marker of treatment response and as an indicator of subsequent complications. Unique strengths of CMR favoring its use in such conditions are its abilities to noninvasively visualize both lumen and vessel wall with high resolution. This case-based review focuses on the large- and medium-vessel vasculitides where MR angiography has the greatest utility. Because of increasing recognition of cardiac involvement in small-vessel vasculitides, this review also presents evidence supporting greater consideration of CMR to detect and quantify myocardial microvascular disease. CMR's complementary role amidst traditional clinical, serological and other diagnostic techniques in personalized care for patients with vasculitis is emphasized. Specifically, the CMR laboratory can address questions related to extent and severity of vascular involvement. As ongoing basic and translational studies better elucidate poorly-defined underlying molecular mechanisms, this review concludes with a discussion of potential directions for the development of more targeted imaging approaches.

摘要

血管炎是血管的炎症,可通过多种靶器官效应产生严重并发症,如失明、肾衰竭、主动脉破裂和心力衰竭。心血管磁共振(CMR)的无创成像有助于提高和更早诊断。CMR 也可用于此类患者的连续评估,作为治疗反应的标志物和随后并发症的指标。CMR 具有独特的优势,有利于其在这些情况下使用,其能够以高分辨率非侵入性地可视化管腔和血管壁。本案例综述重点介绍了大血管和中血管血管炎,其中磁共振血管造影具有最大的效用。由于越来越认识到小血管血管炎的心脏受累,本综述还提出了支持更多考虑 CMR 以检测和量化心肌微血管疾病的证据。CMR 在血管炎患者个体化治疗中与传统临床、血清学和其他诊断技术的互补作用得到强调。具体来说,CMR 实验室可以解决与血管受累程度和严重程度相关的问题。随着正在进行的基础和转化研究更好地阐明定义不明确的潜在分子机制,本综述最后讨论了开发更具针对性的成像方法的潜在方向。

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