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A Skull Segmentation Method for Brain MR Images Based on Multiscale Bilateral Filtering Scheme

机译:基于多尺度双边滤波方案的颅脑MR图像颅骨分割方法

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We present a novel automatic segmentation method for the skull on brain MR images for attenuation correction in combined PET/MRI applications. Our method transforms Tl-weighted MR images to the Radon domain and then detects the feature of the skull. In the Radon domain we use a bilateral filter to construct a multiscale images series. For the repeated convolution we increase the spatial smoothing at each scale and make the cumulative width of the spatial and range Gaussian doubled at each scale. Two filters with different kernels along the vertical direction are applied along the scales from the coarse to fine levels. The results from a coarse scale give a mask for the next fine scale and supervise the segmentation in the next fine scale. The method is robust for noise MR images because of its multiscale bilateral filtering scheme. After combining the two filtered sinogram, the reciprocal binary sinogram of the skull is obtained for the reconstruction of the skull image. We use the filtered back projection method to reconstruct the segmented skull image. We define six metrics to evaluate our segmentation method. The method has been tested with brain phantom data, simulated brain data, and real MRI data. Evaluation results showed that our method is robust and accurate, which is useful for skull segmentation and subsequently for attenuation correction in combined PET/MRI applications.
机译:我们提出了一种新颖的自动分割方法,用于在脑MR图像上的颅骨上进行PET / MRI组合应用中的衰减校正。我们的方法将经过T1加权的MR图像转换为Radon域,然后检测头骨的特征。在Radon域中,我们使用双边滤波器来构建多尺度图像序列。对于重复的卷积,我们在每个比例尺上增加空间平滑度,并在每个比例尺上使空间和范围高斯的累积宽度加倍。沿垂直方向从内核到精细级别的比例应用两个具有不同方向内核的过滤器。粗尺度的结果为下一个精细尺度提供了遮罩,并监督了下一个精细尺度的分割。该方法由于其多尺度双边滤波方案而对于噪声MR图像是鲁棒的。合并两个滤波后的正弦图后,获得头骨的倒数二进制正弦图,以重建头骨图像。我们使用过滤后的投影方法来重建分割的头骨图像。我们定义了六个指标来评估我们的细分方法。该方法已通过脑模型数据,模拟脑数据和真实MRI数据进行了测试。评估结果表明,我们的方法是可靠且准确的,可用于颅骨分割,随后可用于PET / MRI组合应用中的衰减校正。

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