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QUANTIFICATION OF CARDIAC DYSSYNCHRONY IN MICE AFTER MYOCARDIAL INFARCTION USING HIGH RESOLUTION ULTRASOUND

机译:高分辨率超声对心肌梗死后小鼠心脏不同步的量化

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Contractile dyssynchrony in the left ventricles (LVs) of murine hearts post myocardial infarction (MI) was assessed using high resolution 30 MHz ultrasound. Long axis and mid-ventricular short axis image sequences were obtained from six post-Mi C57B1/6 mice. Two normal C57B1/6 mice were also scanned as non-infarcted controls. The ultrasound images had an axial resolution of approximately 50 mum, a lateral resolution of approximately 100 mum, and a temporal resolution of 1000 frames/s (achieved via retrospective compilation of LCG-gated acquisitions). Myocardial tissue displacement was measured using a 2D image tracking algorithm with sub-pixel resolution. Regional myocardial displacement analyses revealed prolonged regional systole and delay to peak displacement, as well as reduced displacement, in regions adjacent to infarcted zones. The regional delays in time to peak displacement ranged from 12 to 20 ms in mouse hearts with large MI. Thus, high resolution 2D ultrasound imaging followed by 2D image tracking analysis provides an efficient and cost-effective method for characterizing LV dyssynchrony in murine hearts post-MI
机译:使用高分辨率30 MHz超声评估心肌梗死(MI)后鼠心左心室(LV)的收缩不同步。从六只Mi C57B1 / 6小鼠获得长轴和心室中短轴图像序列。还扫描了两只正常的C57B1 / 6小鼠作为非梗塞的对照。超声图像的轴向分辨率约为50微米,横向分辨率约为100微米,时间分辨率为1000帧/秒(通过LCG门控采集的回顾性汇编获得)。使用具有亚像素分辨率的2D图像跟踪算法测量心肌组织位移。区域性心肌位移分析显示,在梗塞区域附近的区域中,区域性收缩期延长,峰值位移延迟,并且位移降低。 MI较大的小鼠心脏中,峰位移的区域延迟时间为12到20 ms。因此,高分辨率的2D超声成像以及随后的2D图像跟踪分析提供了一种有效且具有成本效益的方法,用于表征MI后鼠心中的LV不同步

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