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Spatial Normalization and Regional Assessment of Cord Atrophy: Voxel-Based Analysis of Cervical Cord 3D T1-Weighted Images.

机译:脊髓萎缩症的空间归一化和区域评估:基于体素的宫颈脊髓3D T1加权图像分析。

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摘要

BACKGROUND AND PURPOSE:VBM is widely applied to characterize regional differences in brain volume among groups of subjects. The aim of this study was to develop and validate a method for voxelwise statistical analysis of cord volume and to test, with this method, the correlation between cord tissue loss and aging.MATERIALS AND METHODS:3D T1-weighted scans of the spinal cord were acquired from 90 healthy subjects spanning several decades of life. Using an AS method, we outlined the cord surface and created output images reformatted with image planes perpendicular to the estimated cord centerline. Unfolded cervical cord images were coregistered into a common standard space, and smoothed cord binary masks, produced by using the cord outlines estimated by the AS approach, were used as input images for spatial statistics.RESULTS:High spatial correlation between normalized images was observed. Averaging of the normalized scans allowed the creation of a cervical cord template and of a standardized region-of-interest atlas. VBM analysis showed some significant associations between a decreased probability of cord tissue and aging. Results were robust across different smoothing levels, but the use of an anisotropic Gaussian kernel gave the optimal trade-off between spatial resolution and the requirements of the Gaussian random field theory.CONCLUSIONS:VBM analysis of the cervical cord was feasible and holds great promise for accurate localization of regional cord atrophy in several neurologic conditions.
机译:背景与目的:VBM被广泛用于表征受试者组之间脑容量的区域差异。这项研究的目的是开发和验证一种用于脊髓体积的体素统计分析的方法,并用该方法测试脊髓组织损失与衰老之间的相关性。材料与方法:3D T1加权脊髓扫描从跨越数十年生命的90位健康受试者中获得。使用AS方法,我们勾勒出了绳索表面的轮廓,并创建了以垂直于估计的绳索中心线的图像平面重新格式化的输出图像。将未展开的颈髓图像共配准到一个公共标准空间中,并使用通过AS方法估算的脐带轮廓制作的平滑的脐带二值蒙版作为空间统计的输入图像。结果:观察到标准化图像之间的高度空间相关性。归一化扫描的平均值允许创建颈索模板和标准化的关注区域图集。 VBM分析显示,脐带组织减少的可能性与衰老之间存在明显的关联。在不同的平滑级别上,结果都是可靠的,但是使用各向异性高斯核可在空间分辨率和高斯随机场理论的要求之间取得最佳折衷。结论:颈髓的VBM分析是可行的,并具有广阔的前景在几种神经系统疾病中对区域性脊髓萎缩的精确定位。

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