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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Echocardiographic evaluation of diastolic function in mouse models of heart disease
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Echocardiographic evaluation of diastolic function in mouse models of heart disease

机译:心脏病小鼠模型中舒张功能的超声心动图评价

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摘要

Abstract Background Mouse models of heart disease are extensively employed. The echocardiographic characterization of contractile function is usually focused on systolic function with fewer studies assessing diastolic function. Furthermore, the applicability of diverse echocardiographic parameters of diastolic function that are commonly used in humans has not been extensively evaluated in different pathophysiological models in mice. Methods and results We used high resolution echocardiography to evaluate parameters of diastolic function in mouse models of chronic pressure overload (aortic constriction), volume overload (aorto-caval shunt), heart failure with preserved ejection fraction (HFpEF; DOCA-salt hypertension), and acute sarcoplasmic reticulum dysfunction induced by thapsigargin - all known to exhibit diastolic dysfunction. Left atrial area increased in all three chronic models while mitral E/A was difficult to quantify at high heart rates. Isovolumic relaxation time (IVRT) and Doppler E/E′ increased significantly and the peak longitudinal strain rate during early filling (peak reverse longitudinal strain rate) decreased significantly after aortic constriction, with the changes being proportional to the magnitude of hypertrophy. In the HFpEF model, reverse longitudinal strain rate decreased significantly but changes in IVRT and E/E′ were non-significant, consistent with less severe dysfunction. With volume overload, there was a significant increase in reverse longitudinal strain rate and decrease in IVRT, indicating a restrictive physiology. Acute thapsigargin treatment caused significant prolongation of IVRT and decrease in reverse longitudinal strain rate. Conclusion These results indicate that the combined measurement of left atrial area plus reverse longitudinal strain rate and/or IVRT provide an excellent overall assessment of diastolic function in the diseased mouse heart, allowing distinction between different types of pathophysiology. Highlights ? Several echocardiographic indices of diastolic function are applicable to mouse models. ? Isovolumic relaxation time (IVRT) and peak strain during filling are easily quantified. ? Left atrial area increases with pressure and volume overload as well as HFpEF. ? Changes in IVRT and strain during filling distinguish restrictive physiology. ? Combined left atrial area and diastolic strain provide an ideal diagnostic framework.
机译:摘要背景小鼠模型的心脏病被广泛使用。收缩功能的超声心动图表征通常集中在收缩功能上,评估舒张功能较少。此外,在小鼠中的不同病理生理模型中,常用于人类常用的舒张功能的不同超声心动图参数的适用性尚未被广泛评估小鼠中的不同病理学模型。方法和结果我们使用高分辨率超声心动图评估慢性压力过载(主动脉收缩),体积过载(主动脉瘤分流器),保存射血分数(HFPEF; DOCA-盐高血压)的心力衰竭(HFPEF; DOCA-盐高血压)中的高分辨率超声心动图评价舒张功能的参数。尾骨引起的急性肌肉功能障碍 - 均已知表现出舒张性功能障碍。左心房面积在所有三种慢性模型中增加,而二尖瓣E / A难以在高心率下量化。在主动脉收缩后,自离释放时间(IVRT)和多普勒E / E'在早期填充期间的峰值纵向应变率(峰值逆转纵向应变率)显着降低,变化与肥大的大小成比例。在HFPEF模型中,逆转纵向应变率显着降低,但IVRT和E / E'的变化是非显着的,与较小的功能障碍一致。随着体积过载,逆向纵向应变率显着增加,IVRT减少,表明了严格的生理学。急性Thapsigargin治疗导致IVRT的显着延长并降低了逆向纵向应变率。结论这些结果表明,左心房面积加上逆向纵向应变率和/或IVRT的组合测量为患病小鼠心脏的舒张功能提供了优异的整体评估,允许不同类型的病理生理学之间的区分。强调 ?舒张功能的几个超声心动图索引适用于小鼠模型。还填充过程中的内含释放时间(IVRT)和峰值应变易于量化。还左心房区域随压力和体积过载以及HFPEF增加。还填充区分限制生理过程中IVRT和应变的变化。还结合左心房和舒张菌株提供理想的诊断框架。

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  • 作者单位

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    Department of Cardiology and Pneumology University Medical Center Goettingen;

    Department of Cardiology and Pneumology University Medical Center Goettingen;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

    King's College London British Heart Foundation Centre of Excellence Cardiovascular Division;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心脏、血管(循环系)疾病;
  • 关键词

    Mouse; Echocardiography; Diastolic function; Hypertrophy;

    机译:小鼠;超声心动图;舒张功能;肥大;

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