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Automatic falx cerebri and tentorium cerebelli segmentation from Magnetic Resonance Images

机译:磁共振图像自动Falx Cerebri和Tandorium Cerebelli分割

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The falx cerebri and tentorium cerebelli are dural structures found in the brain. Due to the roles both structures play in constraining brain motion, the falx and tentorium must be identified and included in finite element models of the head to accurately predict brain dynamics during injury events. To date there has been very little research work on automatically segmenting these two structures, which is understandable given that their 1) thin structure challenges the resolution limits of in vivo 3D imaging, and 2) contrast with respect to surrounding tissue is low in standard magnetic resonance imaging. An automatic segmentation algorithm to find the falx and tentorium which uses the results of a multi-atlas segmentation and cortical reconstruction algorithm is proposed. Gray matter labels are used to find the location of the falx and tentorium. The proposed algorithm is applied to five datasets with manual delineations. 3D visualizations of the final results are provided, and Hausdorff distance (HD) and mean surface distance (MSD) is calculated to quantify the accuracy of the proposed method. For the falx, the mean HD is 43.84 voxels and the mean MSD is 2.78 voxels, with the largest errors occurring at the frontal inferior falx boundary. For the tentorium, the mean HD is 14.50 voxels and mean MSD is 1.38 voxels.
机译:Falx Cerebri和Tantorium Cerebelli是大脑中发现的多云结构。由于两个结构在约束脑运动中发挥的作用,必须识别并包括在头部的有限元模型中,以准确地预测伤害事件中的脑动力学。迄今为止,在自动分割这两个结构上,鉴于它们的1)薄结构挑战在体内3D成像的分辨率限制,2)与周围组织的对比度为标准磁性的对比度是较低的共振成像。提出了一种自动分割算法,用于找到使用多拟筑群分割和皮质重建算法的结果的FALX和呼吸室。灰质标签用于找到Falx和Tantorium的位置。该算法应用于具有手动描绘的五个数据集。提供了最终结果的3D可视化,并计算Hausdorff距离(HD)和平均表面距离(MSD)以量化所提出的方法的准确性。对于FALX,平均HD是43.84体素,平均MSD为2.78体素,在正面下次FALX边界处发生最大的误差。对于淡紫色,平均HD为14.50体素,平均MSD为1.38体素。

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