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The Effect of Through-Plane Motion on Left Ventricular Rotation: A Study Using Slice Following Harmonic Phase Imaging

机译:通过平面运动对左心室旋转的影响:谐波相成像切片的研究

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摘要

Non-invasive quantification of regional left ventricular (LV) rotation may improve understanding of cardiac function. Current methods employed to quantify rotation typically acquire data on a set of prescribed short-axis slices, neglecting effects due to through-plane myocardial motion. We combine principles of slice-following tagged imaging with harmonic phase analysis methods to account for through-plane motion in regional rotation measurements. We compare rotation and torsion measurements obtained using our method to those obtained from imaging datasets acquired without slice-following. Our results in normal volunteers demonstrate differences in the general trends of average and regional rotation-time plots in mid-basal slices, and of the rotation versus circumferential strain loops. We observe substantial errors in measured peak average rotation of the order of 58% for basal slices (due to change in the pattern of the curve), −6.6% for mid-ventricular slices, and −8.5% for apical slices; and an average error in base-to-apex torsion of 19% when through-plane motion is not considered. This study concludes that due to an inherent base-to-apex gradient in rotation that exists in the LV, accounting for through-plane motion is critical to the accuracy of LV rotation quantification.
机译:区域左心室(LV)旋转的非侵入式定量可以提高对心功能的理解。用于量化旋转的电流方法通常在一组规定的短轴切片上获取数据,因飞机心肌运动而被忽略的效果。我们将切片之后的标记成像原理与谐波相分析方法相结合,以解释区域旋转测量中的穿过平面运动。我们比较使用我们的方法获得的旋转和扭转测量来从未在没有切片的成像数据集获得的那些。我们在正常志愿者中的结果表明了中基片的平均水平和区域旋转时间图的一般趋势的差异,以及旋转与圆周应变环。我们在测量的峰值平均旋转中观察到基底切片的58%阶的大量误差(由于曲线图案的变化),用于中间切片的-6.6%,顶端切片为-8.5%;当不考虑通过平面动作时,基于平面运动的基础到顶点扭转的平均误差。本研究得出结论,由于LV中存在的旋转的固有基础到顶点梯度,通过平面运动的核算对于LV旋转量化的准确性至关重要。

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