Performance of Optical Flow tracking approaches for cardiac motion analysis

Azza S. Hassanein, A. Khalifa, W. Al-Atabany, M. El-Wakad
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引用次数: 6

Abstract

Tagging Magnetic Resonance Imaging (MRI) sequence is used for evaluating Left Ventricular contractility. In this technique, a pattern of spatially varying magnetism is applied at the end diastole. Analyzing the deformation of tag pattern during the cardiac cycle has wide applications for cardiac deformation analysis. Noninvasive myocardial tagging in MRI has shown great potential in measuring and studying the motion of the heart. This paper presents a mathematical model that simulates the real cardiac motion during myocardial tagging. We synthesized both the Spatial Modulation of Magnetization (SPAMM) and complementary Spatial Modulation of Magnetization (CSPAMM) tag patterns with arbitrary spatial frequency. Using this model, we tested the performance and limitations of different Optical Flow (OF) motion tracking techniques and compared them with the performance of Harmonic Phase (HARP) analysis technique. The results exhibit that the OF tracking accuracy differs from point to another with a noticeable over estimation at the end of systole. Also OF is performing better than HARP at the heart borders.
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光流跟踪方法在心脏运动分析中的性能
标记磁共振成像(MRI)序列用于评估左心室收缩力。在这种技术中,空间变化的磁性模式被应用于舒张末期。分析心脏周期中标签图案的变形在心脏变形分析中有着广泛的应用。MRI无创心肌标记在测量和研究心脏运动方面显示出巨大的潜力。本文提出了一个模拟心肌标记过程中真实心脏运动的数学模型。我们合成了任意空间频率的空间调制磁化(SPAMM)和互补空间调制磁化(CSPAMM)标签图案。利用该模型测试了不同光流运动跟踪技术的性能和局限性,并与谐波相位分析技术进行了比较。结果表明,各点的跟踪精度不同,在收缩期结束时有明显的过估计。此外,OF在心脏边界的表现也比HARP好。
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