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Manual Annotation, 3-D Shape Reconstruction,and Traumatic Brain Injury Analysis

机译:手动注释,3-D形状重建和颅脑外伤分析

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Bitmask drawing is still the established standard for manual annotation of brain structures by experts. To alleviate problems such as bitmask inconsistencies between slices that lead to jagged contours in corresponding orthogonal cross-sections, we propose a 2-D spline-based contour editing tool in combination with a new algorithm for surface reconstruction from 3-D point clouds. This approach uses a new implicit surface formulation that adapts to the local density of points. We show that manual segmentation of the brainstem, cerebellum, corpus callo-sum, caudate, putamen, hippocampus and thalamus can be performed with high reproducibility in Magnetic Resonance (MR) data and sufficient accuracy to analyze volume changes for mild Traumatic Brain Injury (TBI) patients. In addition, we show that the new surface reconstruction method allows to reconstruct the shape of brain structures such as the brainstem better than other established surface reconstruction approaches. Our tool can, therefore, not only be used for volume measurements, but may also be used to assess local shape changes of brain structures going along with the progression of neuro-degenerative diseases such as TBI.
机译:位掩码绘制仍然是专家手动注释大脑结构的既定标准。为了缓解诸如切片之间的位掩码不一致导致在相应的正交截面中出现锯齿状轮廓的问题,我们提出了一种基于2-D样条的轮廓编辑工具,并结合了一种用于从3-D点云重建曲面的新算法。这种方法使用了一种新的隐式表面公式,该公式可适应点的局部密度。我们显示,脑干,小脑,call体,尾状,壳状核,海马和丘脑的手动分割可以在磁共振(MR)数据中具有很高的再现性,并具有足够的准确性以分析轻度创伤性脑损伤(TBI)的体积变化) 耐心。此外,我们表明,与其他已建立的表面重建方法相比,新的表面重建方法可以更好地重建大脑结构(如脑干)的形状。因此,我们的工具不仅可以用于体积测量,还可以用于评估随着神经退行性疾病(例如TBI)的发展而变化的大脑结构的局部形状变化。

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