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Edge Sharpness Assessment by Parametric Modeling: Application to Magnetic Resonance Imaging

机译:通过参数建模的边缘清晰度评估:在磁共振成像中的应用

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摘要

In biomedical imaging, edge sharpness is an important yet often overlooked image quality metric. In this work, a semi-automatic method to quantify edge sharpness in the presence of significant noise is presented with application to magnetic resonance imaging (MRI). The method is based on parametric modeling of image edges. First, an edge map is automatically generated and one or more edges-of-interest (EOI) are manually selected using graphical user interface. Multiple exclusion criteria are then enforced to eliminate edge pixels that are potentially not suitable for sharpness assessment. Second, at each pixel of the EOI, an image intensity profile is read along a small line segment that runs locally normal to the EOI. Third, the profiles corresponding to all EOI pixels are individually fitted with a sigmoid function characterized by four parameters, including one that represents edge sharpness. Last, the distribution of the sharpness parameter is used to quantify edge sharpness. For validation, the method is applied to simulated data as well as MRI data from both phantom imaging and cine imaging experiments. This method allows for fast, quantitative evaluation of edge sharpness even in images with poor signal-to-noise ratio. Although the utility of this method is demonstrated for MRI, it can be adapted for other medical imaging applications.
机译:在生物医学成像中,边缘清晰度是重要的但经常被忽视的图像质量指标。在这项工作中,提出了一种在存在显着噪声的情况下量化边缘清晰度的半自动方法,并将其应用于磁共振成像(MRI)。该方法基于图像边缘的参数化建模。首先,自动生成边缘图,并使用图形用户界面手动选择一个或多个感兴趣的边缘(EOI)。然后强制执行多个排除标准,以消除可能不适合清晰度评估的边缘像素。其次,在EOI的每个像素处,沿着一条垂直于EOI局部延伸的小线段读取图像强度轮廓。第三,与所有EOI像素相对应的配置文件分别装有S型函数,该函数具有四个参数,其中四个参数代表边缘清晰度。最后,清晰度参数的分布用于量化边缘清晰度。为了验证,该方法适用于幻像成像和电影成像实验的模拟数据和MRI数据。即使在信噪比较差的图像中,该方法也可以对边缘清晰度进行快速,定量的评估。尽管已证明此方法可用于MRI,但它可适用于其他医学成像应用。

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