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A Comparative Study and Analysis on Techniques for Diffusion-Weighted Magnetic Resonance Imaging

机译:弥散加权磁共振成像技术的比较研究与分析

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Neural scientists have long been eager to find the subcortical pathways between different parts of cortex in human brain. By far, diffusion weighted-magnetic resonance imaging (DW-MRI) is the only noninvasive technique to achieve this task in vivo. It applies a bipolar gradient to reveal diffusion of water molecules. With the assumption that the directions of neural fibers parallel to the directions in which water molecules diffuse, we can use the DW-MRI to track the neural fibers. Various signal processing techniques have been developed in extracting the directional information via DW-MRI. In this study, four techniques that are currently being used but have not been rigorously compared for performance are evaluated via custom-designed synthetic data and phantoms. By combining different techniques in accordance with their specialties, a better approach to track finer subcortical pathways in vivo can be derived and used to verify theories in human brain mapping
机译:神经科学家长期以来一直渴望找到人脑中皮质不同部分之间的皮质途径。到到目前为止,扩散加权 - 磁共振成像(DW-MRI)是唯一在体内实现这项任务的非侵入性技术。它适用于双极梯度来揭示水分子的扩散。假设神经纤维的方向平行于水分子弥漫的方向,我们可以使用DW-MRI跟踪神经纤维。已经开发了各种信号处理技术,用于通过DW-MRI提取方向信息。在这项研究中,通过定制设计的合成数据和幻像评估目前正在使用但尚未经过严格比较的技术。通过根据他们的专业结合不同的技术,可以推导出追踪体内更精细的皮质点途径的更好方法,并用于验证人脑映射中的理论

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