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Noninvasive Assessment of Myocardial Mechanics of the Left Ventricle in Rabbits Using Velocity Vector Imaging

机译:速度矢量成像技术对兔左心室心肌力学的无创评估

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BACKGROUND Our study aimed to investigate the feasibility of velocity vector imaging (VVI) to analyze left ventricular (LV) myocardial mechanics in rabbits at basal state. MATERIAL AND METHODS The animals used in this study were 30 New Zealand white rabbits. All rabbits underwent routine echocardiography under VVI-mode at basal state. The 2-dimensional (2-D) echocardiography images acquired included parasternal left long-axis views and short-axis views at the level of LV mitral valve, papillary muscles, and apex. Images were analyzed by VVI software. RESULTS At basal state, longitudinal LV velocity decreased from the basal to the apical segment ([i]P[/i]<0.05). In the short axis direction, the highest peak myocardial velocity was found between the anterior septum and anterior wall for each segment at the same level; the peak strains and strain rates (SR) were the highest in the anterior and lateral wall compared to other segments (all [i]P[/i]<0.05). During systole, LV base rotated in a clockwise direction and LV apex rotated in a counter-clockwise direction, while during diastole, both LV base and apex rotated in the direction opposite to systole. The rotation angle, rotation velocity and unwinding velocity in the apical segment were greater than the basal segment ([i]P[/i]<0.05). CONCLUSIONS VVI is a reliable tool for evaluating LV myocardial mechanics in rabbits at basal state, and the LV long-axis short-axis and torsional motions reflect the normal regular patterns. Our study lays the foundation for future experimental approaches in rabbit models and for other applications related to the study of human myocardial mechanics.
机译:背景技术我们的研究旨在探讨速度矢量成像(VVI)在基础状态下分析兔左心室(LV)心肌力学的可行性。材料与方法本研究中使用的动物为30只新西兰白兔。所有兔在基础状态下均以VVI模式进行常规超声心动图检查。采集的二维(2-D)超声心动图图像包括左胸骨旁左长轴视图和短轴视图,其位于LV二尖瓣,乳头肌和先端水平。通过VVI软件分析图像。结果在基底状态下,纵向LV速度从基底节段向根尖节段降低([i] P [/ i] <0.05)。在短轴方向上,在每个间隔的前隔片和前壁之间,在同一水平处发现了最高的峰值心肌速度。与其他节段相比,前壁和侧壁的峰值应变和应变率(SR)最高(所有[i] P [/ i] <0.05)。在心脏收缩期,LV基座沿顺时针方向旋转,而LV顶点在逆时针方向旋转,而在心脏舒张期,LV基座和顶点均沿与心脏收缩相反的方向旋转。根节段的旋转角度,旋转速度和放卷速度大于基节段([i] P [/ i] <0.05)。结论VVI是评估基础状态下兔左心室心肌力学的可靠工具,左心室长轴短轴和扭转运动反映了正常规律。我们的研究为兔模型中未来的实验方法以及与人类心肌力学研究相关的其他应用奠定了基础。

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