蒋月薪, 郭应坤. 心脏磁共振技术在高原心脏病早期心肌损伤中的应用研究进展[J]. 实用临床医药杂志, 2021, 25(11): 120-123, 128. DOI: 10.7619/jcmp.20211059
引用本文: 蒋月薪, 郭应坤. 心脏磁共振技术在高原心脏病早期心肌损伤中的应用研究进展[J]. 实用临床医药杂志, 2021, 25(11): 120-123, 128. DOI: 10.7619/jcmp.20211059
JIANG Yuexin, GUO Yingkun. Research progress in application of cardiac magnetic resonance technique in early myocardial injury of high altitude heart disease[J]. Journal of Clinical Medicine in Practice, 2021, 25(11): 120-123, 128. DOI: 10.7619/jcmp.20211059
Citation: JIANG Yuexin, GUO Yingkun. Research progress in application of cardiac magnetic resonance technique in early myocardial injury of high altitude heart disease[J]. Journal of Clinical Medicine in Practice, 2021, 25(11): 120-123, 128. DOI: 10.7619/jcmp.20211059

心脏磁共振技术在高原心脏病早期心肌损伤中的应用研究进展

Research progress in application of cardiac magnetic resonance technique in early myocardial injury of high altitude heart disease

  • 摘要: 高原心脏病(HAHD)是指长期生活在低压、低氧环境下产生的一系列病理生理变化所致的心肌损害和循环系统功能障碍疾病。HAHD早期诊断难,临床预后差,严重威胁高原世居人群及移居人群的健康。心脏磁共振成像因组织分辨率高、可重复性好、多参数成像等优点,可敏感地检出HAHD患者早期心肌改变,为临床早诊断、早治疗提供科学依据,并可作为疗效监测、指导用药及预后判断的重要方法。本研究对HAHD的临床特点、心肌损伤机制、心脏磁共振评价方法及临床价值进行综述。

     

    Abstract: High altitude heart disease (HAHD) refers to the disease of myocardial damage and circulatory system dysfunction caused by a series of pathophysiological changes under long-term low pressure and hypoxia environment in high altitude districts. HAHD seriously threatens the health of native and immigrated people at high altitude because it is difficult to make early diagnosis and has poor clinical prognosis. Cardiac magnetic resonance imaging can sensitively detect early myocardial abnormalities in HAHD patients due to its high tissue resolution, good repeatability and multi-parameter imaging, and is of great significance in providing scientific evidence for early diagnosis and clinical decision-making. Therefore, cardiac magnetic resonance can be used as a sensitive biomarker for efficacy monitoring, medication guidance and clinical prognosis. This article reviewed the clinical characteristics of HAHD, the mechanism of myocardial injuries and its clinical applications with CMR imaging.

     

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