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Noise-Reduced TPS Interpolation of Primary Vector Fields for Fiber Tracking in Human Cardiac DT-MRI

机译:用于人类心脏DT-MRI的纤维追踪的主矢量场的降噪TPS插值

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Denoising and interpolation of primary vector fields in DT-MRI are essential for tracking myocardial fibers of the human heart. In this paper, a noise-reduced interpolation method for 3-D primary vector fields in human cardiac DT-MRI is proposed. The method consists of first localizing the noise-corrupted vectors using local statistical properties of the vector fields, then restoring the noise-corrupted vectors by means of Thin Plate Spline (TPS) interpolation method, and finally applying a global TPS interpolation to gain higher resolution in the spatial domain. Experiments and results show that the proposed method allows us to obtain higher resolution and reduce noise, while improving direction-coherence (DC) of vector fields, preserving details, and improving fiber tracking.
机译:DT-MRI中主要向量场的去噪和内插对于跟踪人心脏的心肌纤维至关重要。本文提出了一种用于人心脏DT-MRI中3-D主矢量场的降噪插值方法。该方法包括:首先使用向量场的局部统计属性对噪声破坏的向量进行定位,然后通过薄板样条(TPS)插值方法恢复噪声破坏的向量,最后应用全局TPS插值以获得更高的分辨率在空间领域。实验和结果表明,所提出的方法可以使我们获得更高的分辨率并减少噪声,同时改善了矢量场的方向相干(DC),保留了细节并改善了光纤跟踪。

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