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用于识别磁共振图像中主要包含噪声的像素的复杂阈值方法。

Complex threshold method for identifying pixels that contain predominantly noise in magnetic resonance images.

作者信息

Pandian Daniel S J, Ciulla Carlo, Haacke E Mark, Jiang Jing, Ayaz Muhammad

机构信息

Department of Computer Science, Wayne State University, Detroit, Michigan 48201, USA.

出版信息

J Magn Reson Imaging. 2008 Sep;28(3):727-35. doi: 10.1002/jmri.21487.

Abstract

PURPOSE

To create a robust means to remove noise pixels using complex data.

MATERIALS AND METHODS

A receiver operating characteristic (ROC) curve was used to determine the appropriate choice of magnitude and phase thresholds as well as connectivity values to determine what pixels represent noise in the image. To fine-tune the results, a spike removal and hole replacement operator is applied to reduce Type I error and remove small islands of noise.

RESULTS

The use of phase information improves the magnitude-only thresholding approach by further recognizing pixels that contain only noise. The performance of the method is enhanced using local connectivity of magnitude and phase data. An ROC analysis on simulated data shows that the Type I and Type II errors are less than 10(-4) and 10(-3), respectively, without connectivity and 0 and 10(-3), respectively, with connectivity for a signal-to-noise ratio (SNR) of 3:1 or higher.

CONCLUSION

The joint use of both magnitude and phase images helps to improve the removal of noise points in magnetic resonance images. This can prove useful in automating the visualization of phase images without the highly distractive phase noise in noise regions. Also, it is useful in susceptibility weighted imaging when taking the minimum intensity projections of variably sized regions.

摘要

目的

创建一种使用复数数据去除噪声像素的可靠方法。

材料与方法

使用接收器操作特性(ROC)曲线来确定幅度和相位阈值以及连通性值的合适选择,以确定图像中哪些像素代表噪声。为了微调结果,应用尖峰去除和空洞填充算子来减少I型错误并去除小的噪声孤岛。

结果

通过进一步识别仅包含噪声的像素,相位信息的使用改进了仅基于幅度的阈值处理方法。利用幅度和相位数据的局部连通性提高了该方法的性能。对模拟数据的ROC分析表明,对于3:1或更高的信噪比,在不使用连通性时,I型和II型错误分别小于10^(-4)和10^(-3),使用连通性时分别为0和10^(-3)。

结论

幅度图像和相位图像的联合使用有助于改善磁共振图像中噪声点的去除。这在自动可视化相位图像时很有用,可避免噪声区域中极具干扰性的相位噪声。此外,在对大小可变区域进行最小强度投影的磁敏感加权成像中也很有用。

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