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Level Set Diffusion for MRE Image Enhancement

机译:用于MRE图像增强的水平集扩散

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Magnetic resonance elastography (MRE) is an emerging technique for noninvasive imaging of tissue elasticity. Proprietary algorithms are used to reconstruct tissue elasticity from the images of wave propagation within soft tissue. Elasticity reconstruction suffers from interfering noise and outliers. The interference causes biased elasticity and undesired artifacts in the reconstructed elasticity map. Anisotropic geometric diffusion is able to suppress image noise while enhance inherent features. Therefore we integrate anisotropic diffusion with level set methods for numerical enhancement of MRE wave images. Performance evaluation of the proposed level set diffusion (LSD) approach was conducted on both synthetic and real MRE datasets. Experimental results confirm the effectiveness of LSD for MRE image enhancement and direct inversion.
机译:磁共振弹性成像(MRE)是一种用于组织弹性无创成像的新兴技术。专有算法用于从软组织内的波传播图像重建组织弹性。弹性重建会受到噪声和离群值的干扰。干涉在重构的弹性图中导致偏斜的弹性和不希望的伪像。各向异性的几何扩散能够抑制图像噪声,同时增强其固有特征。因此,我们将各向异性扩散与水平集方法集成在一起,以对MRE波图像进行数值增强。在合成和实际MRE数据集上都对提议的水平集扩散(LSD)方法进行了性能评估。实验结果证实了LSD对MRE图像增强和直接反演的有效性。

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