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Echocardiographic speckle-tracking based strain imaging for rapid cardiovascular phenotyping in mice.

机译:基于超声心动图斑点跟踪的应变成像,用于小鼠的快速心血管表型研究。

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Rationale: High-sensitivity in vivo phenotyping of cardiac function is essential for evaluating genes of interest and novel therapies in small animal models of cardiovascular disease. Transthoracic echocardiography is the principal method currently used for assessing cardiac structure and function; however, standard echocardiographic techniques are relatively insensitive to early or subtle changes in cardiac performance, particularly in mice. Objective: To develop and validate an echocardiographic strain imaging methodology for sensitive and rapid cardiac phenotyping in small animal models. Methods and Results: Herein, we describe a modified echocardiographic technique that uses speckle-tracking based strain analysis for the noninvasive evaluation of cardiac performance in adult mice. This method is found to be rapid, reproducible, and highly sensitive in assessing both regional and global left ventricular (LV) function. Compared with conventional echocardiographic measures of LV structure and function, peak longitudinal strain and strain rate were able to detect changes in adult mouse hearts at an earlier time point following myocardial infarction and predicted the later development of adverse LV remodeling. Moreover, speckle-tracking based strain analysis was able to clearly identify subtle improvement in LV function that occurred early in response to standard post-myocardial infarction cardiac therapy. Conclusions: Our results highlight the utility of speckle-tracking based strain imaging for detecting discrete functional alterations in mouse models of cardiovascular disease in an efficient and comprehensive manner. Echocardiography speckle-tracking based strain analysis represents a method for relatively high-throughput and sensitive cardiac phenotyping, particularly in evaluating emerging cardiac agents and therapies in mice.
机译:原理:对心脏功能的高敏感性体内表型分析对于评估心血管疾病小动物模型中的目标基因和新颖疗法至关重要。经胸超声心动图检查是目前用于评估心脏结构和功能的主要方法。但是,标准的超声心动图技术对心脏功能的早期或细微变化相对不敏感,尤其是在小鼠中。目的:开发和验证用于小型动物模型中敏感和快速心脏表型的超声心动图应变成像方法。方法和结果:在本文中,我们描述了一种改进的超声心动图技术,该技术使用基于斑点跟踪的应变分析对成年小鼠的心脏性能进行无创评估。在评估区域和整体左心室(LV)功能时,发现该方法快速,可重复且高度敏感。与传统的超声心动图测量左心室结构和功能相比,峰值纵向应变和应变率能够在心肌梗塞后的较早时间点检测成年小鼠心脏的变化,并预测不良左心室重构的较晚发展。此外,基于斑点追踪的应变分析能够清楚地识别出对标准心肌梗死后心脏治疗的早期反应,LV功能有细微的改善。结论:我们的结果突出了基于斑点跟踪的应变成像在高效,全面的方法中检测心血管疾病小鼠模型中离散功能改变的实用性。基于超声心动图斑点跟踪的应变分析代表了一种相对较高通量和敏感的心脏表型的方法,尤其是在评估小鼠中新兴的心脏药物和疗法方面。

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