健康受试者室间隔的高帧率应变率成像

Stig A Slørdahl , Steinar Bjærum , Brage H Amundsen , Asbjørn Støylen , Andreas Heimdal , Stein Inge Rabben , Hans Torp
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引用次数: 27

摘要

目的:在本研究中,评估了一种新的应变速率成像方法的可行性,该方法的帧速率非常高,约为每秒300帧。方法:在9名健康受试者中使用20–30°的扇形心尖四腔视野获得数字射频(RF)数据。使用专用软件包分析RF数据,该软件包显示应变速率图像和轮廓并计算应变速率值。使用新方法,可以研究持续时间低至3.5–3毫秒的心动周期中的事件和时空差异,包括射血前期和等容舒张期。由于室间隔(IVS)对左心室和右心室功能至关重要,我们评估了IVS应变率在心动周期中的变化。结果:健康受试者的平均峰值收缩应变率为-1.65±0.13s−1。早期充盈期间的平均峰值舒张应变率为3.14±0.50 s−1,心房收缩期间为0.99±0.09 s−1。我们发现应变率模式存在个体差异,但在所有受试者中,心室收缩在隔膜的所有部位同时开始。在射血期后,在主动脉瓣关闭前,在骨膜中隔膜开始伸长,并向心尖延伸。结论:高帧率应变速率成像使研究心壁快速变形模式成为可能。
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High frame rate strain rate imaging of the interventricular septum in healthy subjects

Objective: In the present study the feasibility was assessed of a new strain rate imaging method with a very high frame rate of around 300 frames per second. Methods: Digital radio-frequency (RF) data were obtained in nine healthy subjects using a sector of 20–30° in an apical four chamber view. The RF data were analysed using a dedicated software package that displays strain rate images and profiles and calculates strain rate values. With the new method, it is possible to study events and spatial-temporal differences in the heart cycle with duration down to 3.5–3 ms, including the pre-ejection period and the isovolumic relaxation period. Since the interventricular septum (IVS) is of crucial importance for the left and right ventricular function, we assessed changes through the heart cycle of the strain rate in the IVS. Results: Mean peak systolic strain rate in the healthy subjects was −1.65±0.13 s−1. Mean peak diastolic strain rate during early filling was 3.14±0.50 s−1 and during atrial systole 0.99±0.09 s−1. We found individual differences in the strain rate patterns, but in all subjects, the ventricular contraction started simultaneously in all parts of the septum. After the ejection period, the elongation started before aortic valve closure, in the midinferior septum and propagated towards the apex. Conclusion: High frame rate strain rate imaging makes it possible to study rapid deformation patterns in the heart walls.

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