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Rapid Quantification of White Matter Disconnection in the Human Brain

机译:人脑中白质分离的快速定量

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With an estimated five million new stroke survivors every year and a rapidly aging population suffering from hyperintensities and diseases of presumed vascular origin that affect white matter and contribute to cognitive decline, it is critical that we understand the impact of white matter damage on brain structure and behavior. Current techniques for assessing the impact of lesions consider only location, type, and extent, while ignoring how the affected region was connected to the rest of the brain. Regional brain function is a product of both local structure and its connectivity. Therefore, obtaining a map of white matter disconnection is a crucial step that could help us predict the behavioral deficits that patients exhibit. In the present work, we introduce a new practical method for computing lesion-based white matter disconnection maps that require only moderate computational resources. We achieve this by creating diffusion tractography models of the brains of healthy adults and assessing the connectivity between small regions. We then interrupt these connectivity models by projecting patients’ lesions into them to compute predicted white matter disconnection. A quantified disconnection map can be computed for an individual patient in approximately 35 seconds using a single core CPU-based computation. In comparison, a similar quantification performed with other tools provided by MRtrix3 takes 5.47 minutes.
机译:每年估计有五百万新的中风幸存者,并且人口迅速老龄化,患有影响白质并导致认知能力下降的高强度和推测的血管源性疾病,因此了解白质损害对脑部结构和器官的影响至关重要。行为。当前评估病变影响的技术仅考虑位置,类型和程度,而忽略了受影响区域与大脑其余部分的联系方式。区域性脑功能是局部结构及其连接性的产物。因此,获得白质分离的图谱是至关重要的步骤,可以帮助我们预测患者表现出的行为缺陷。在当前的工作中,我们介绍了一种新的实用方法,用于计算仅需中等计算资源的基于病变的白质断开连接图。我们通过创建健康成年人大脑的扩散tractography模型并评估小区域之间的连通性来实现这一目标。然后,我们通过将患者的病变投射到其中以计算预测的白质断开来中断这些连通性模型。使用基于单核CPU的计算,可以在大约35秒内为单个患者计算量化的断开映射。相比之下,使用MRtrix3提供的其他工具进行的相似定量仅需5.47分钟。

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