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首页> 外文期刊>Circulation journal >High-Frequency Echocardiography ― Transformative Clinical and Research Applications in Humans, Mice, and Zebrafish ―
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High-Frequency Echocardiography ― Transformative Clinical and Research Applications in Humans, Mice, and Zebrafish ―

机译:高频超声心动图在人类,小鼠和斑马鱼中的转化性临床研究应用―

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Echocardiography is an invaluable tool for characterizing cardiac structure and function in vivo. Technological advances in high-frequency ultrasound over the past 3 decades have increased spatial and temporal resolution, and facilitated many important clinical and basic science discoveries. Successful reverse translation of established echocardiographic techniques, including M-mode, B-mode, color Doppler, pulsed-wave Doppler, tissue Doppler and, most recently, myocardial deformation imaging, from clinical cardiology into the basic science laboratory has enabled researchers to achieve a deeper understanding of myocardial phenotypes in health and disease. With high-frequency echocardiography, detailed evaluation of ventricular systolic function in a range of small animal models is now possible. Furthermore, improvements in frame rate and the advent of diastolic strain rate imaging, when coupled with the use of select pulsed-wave Doppler parameters, such as isovolumic relaxation time and E wave deceleration, have enabled nuanced interpretation of ventricular diastolic function. Comparing pulsed-wave Doppler indices of atrioventricular inflow during early and late diastole with parameters that describe the simultaneous myocardial deformation (e.g., tissue Doppler é and á, global longitudinal strain rate and global longitudinal velocity) may yield additional insights related to myocardial compliance. This review will provide a historical perspective of the development of high-frequency echocardiography and consider how ongoing innovation will help future-proof this important imaging modality for 21st century translational research.
机译:超声心动图是表征体内心脏结构和功能的宝贵工具。在过去的30年中,高频超声技术的进步提高了空间和时间分辨率,并促进了许多重要的临床和基础科学发现。从临床心脏病学到基础科学实验室,已建立的超声心动图技术(包括M模式,B模式,彩色多普勒,脉冲波多普勒,组织多普勒以及最近的心肌变形成像)的成功反向翻译已使研究人员得以实现更深入地了解健康和疾病中的心肌表型。借助高频超声心动图,现在可以在一系列小动物模型中详细评估心室收缩功能。此外,帧速率的提高和舒张期舒张率成像的出现,再加上选择的脉冲多普勒参数,如等容舒张时间和E波减速,使对心室舒张功能的细致入微的解释成为可能。将舒张早期和晚期舒张期房室流入的脉冲多普勒指数与描述同时发生的心肌变形的参数(例如组织多普勒é和á,整体纵向应变率和整体纵向速度)进行比较,可能会得出与心肌顺应性相关的更多见解。这篇综述将为高频超声心动图的发展提供一个历史视角,并考虑正在进行的创新将如何为这个面向21世纪的转化研究的重要成像方式提供未来验证。

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