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Automatic Segmentation of a Brain Region in MR Images Using Automatic Thresholding and 3D Morphological Operations

机译:使用自动阈值和3D形态学操作对MR图像中的大脑区域进行自动分割

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摘要

A novel technique for automatic segmentation of a brain region in single channel MR images for visualization and analysis of a human brain is presented. The method generates a volume of brain masks by automatic thresholding using a dual curve fitting technique and by 3D morphological operations. The dual curve fitting can reduce an error in curve fitting to the histogram of MR images. The 3D morphological operations, including erosion, labeling of connected-components, max-feature operation, and dilation, are applied to the cubic volume of masks reconstructed from the thresholded brain masks. This method can automatically segment a brain region in any displayed type of sequences, including extreme slices, of SPGR, T1-, T2-, and PD-weighted MR image data sets which are not required to contain the entire brain. In the experiments, the algorithm was applied to 20 sets of MR, images and showed over 0.97 of similarity index in comparison with manual drawing.
机译:提出了一种用于在单通道MR图像中自动分割大脑区域以可视化和分析人脑的新技术。该方法通过使用双曲线拟合技术的自动阈值法和3D形态学运算来生成一定数量的脑罩。双曲线拟合可以减少对MR图像直方图进行曲线拟合的误差。将3D形态学运算(包括侵蚀,连接的组件的标记,最大特征运算和膨胀)应用于从阈值脑部蒙版重建的蒙版的立方体积。此方法可以按任何显示类型的序列自动分割大脑区域,包括SPGR,T1,T2和PD加权MR图像数据集的任意显示序列,这些序列不需要包含整个大脑。在实验中,将该算法应用于20套MR图像,与手工绘制相比显示出0.97以上的相似性指标。

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