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A Novel Anatomically-Constrained Global Tractography Approach to Monitor Sharp Turns in Gyri

机译:一种新颖的解剖学上受约束的全局描记法,以监控Gyri的急转弯

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Tractography from diffusion-weighted MRI (DWI) has revolutionized the brain connectivity investigation in vivo but still lack of anatomical tools to overcome controversial situations and to investigate the fibers reconstruction within gyri. In this work, we propose a non-generative global spin-glass tractography approach using anatomical priors to constrain the tracking process by integrating the pial surface knowledge to manage sharp turns of fibers approaching the cortical mantel according to its normal direction. The optimum configuration is obtained using a stochastic optimization of the global framework energy, resulting from a trade-off between a first term measuring the discrepancy between the spin glass directions and the underlying field of orientation distribution functions (ODF) or mean apparent propagators (MAP) estimated from the DWI data, and a second term related to the curvature of the generated fibers. The method was tested on a synthetic 90° crossing phantom and on a real brain postmortem sample.
机译:扩散加权MRI(DWI)的术式图谱已经彻底改变了体内的大脑连通性研究,但仍然缺乏克服有争议的情况并研究回旋内纤维重建的解剖学工具。在这项工作中,我们提出了一种非生成式的全球自旋玻璃纤维束照相术,该方法利用解剖学先验来通过整合瞳孔表面知识来管理根据其正常方向接近皮质壁炉的纤维的急转弯来限制跟踪过程。最佳配置是使用全局框架能量的随机优化获得的,这是通过测量旋转玻璃方向之间的差异的第一项与定向分布函数(ODF)或平均视在传播体(MAP)的基础之间的权衡而得出的)是根据DWI数据估算的,以及与生成纤维的曲率有关的第二项。该方法在合成的90°交叉幻像和真实的大脑尸体样本上进行了测试。

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