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一种基于轴向和径向扩散率的结构完整性评估新方法。

A new approach to structural integrity assessment based on axial and radial diffusivities.

作者信息

Wheeler-Kingshott Claudia A M, Ciccarelli Olga, Schneider Torben, Alexander Daniel C, Cercignani Mara

机构信息

NMR Research Unit, Queen Square MS Centre, Department of Neuroinflamtion, UCL Institute of Neurology, London, UK.

出版信息

Funct Neurol. 2012 Apr-Jun;27(2):85-90.

Abstract

This study describes a method for performing diffusivity measures along and across a specific direction, derived from white matter in healthy controls. The diffusion tensor (DT) assigns a principal eigenvector (v₁) and eigenvalue (axial diffusivity, d(ax)) to each voxel. The average of the second and third eigenvalues is the radial diffusivity, d(rad) v₁ may be affected by pathology, therefore when comparing d(ax) and d(rad) in patients one has to consider the direction of the measurement and underlying anatomy. Here we created a representative super-DT dataset, DT(ref), whose eigenvector, v(1,ref), was considered the most likely direction of diffusivity per voxel. We defined the projected axial diffusivity, d(p-ax), as the projection of individual DTs along v(1,ref) and the projected radial diffusivity, d(p-rad), as the average of the projections along the second and third eigenvectors of DT(ref). The projected diffusivities are promising new parameters for studying white matter pathology.

摘要

本研究描述了一种沿特定方向并跨越该方向进行扩散率测量的方法,该方法源自健康对照者的白质。扩散张量(DT)为每个体素分配一个主特征向量(v₁)和特征值(轴向扩散率,d(ax))。第二和第三特征值的平均值为径向扩散率,d(rad)。v₁可能会受到病理情况的影响,因此在比较患者的d(ax)和d(rad)时,必须考虑测量方向和基础解剖结构。在此,我们创建了一个代表性的超DT数据集DT(ref),其特征向量v(1,ref)被视为每个体素最可能的扩散方向。我们将投影轴向扩散率d(p-ax)定义为个体DT沿v(1,ref)的投影,将投影径向扩散率d(p-rad)定义为沿DT(ref)的第二和第三特征向量投影的平均值。投影扩散率是研究白质病理的有前景的新参数。

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