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Diffusion Tensor-Based Fiber Tracking in Cervical Spinal Cord with a 3T MRI

机译:颈脊髓颈脊髓的扩散张力基础纤维跟踪3T MRI

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The protocol for spinal DTI and tractography with high SNR and spatial resolution has been developed and tested on 6 healthy subjects and 1 CSM patient in a 3T system. Fiber bundles were traced and were found running parallel to the cervical spinal cord correlating with the neuronal anatomy in normal subjects. The FA maps showed consistent low FA region connecting all spinal levels, which corresponded to the grey matter structure in anatomical imaging. Spinal DTI in CSM showed diffusivity increase at compression sites. The proposed diffusion eigenvector-based method was able to differentiate between λa and λr even when there was a drastic diffusivity change at compressed regions in CSM, which may facilitate better understanding of the pathophysiology of CSM. Our results indicated that using the current imaging and post-processing protocols, spinal DTI can be achieved with belter grey/white matter contrast, high inter-subject reproducibility and diagnostic ability.
机译:在3T系统中开发和测试了脊柱DTI和具有高SNR和空间分辨率的牵引的方案,并测试了3T系统中的1名CSM患者。探测纤维束,并发现与正常对象中的神经元解剖学相关的平行于颈椎脊髓运行。该FA图显示了连接所有脊柱水平的一致低FA区域,其对应于解剖成像中的灰质结构。 CSM中的脊柱DTI显示压缩部位的扩散率增加。所提出的扩散特征向量的方法能够区分λa和λr,即使在CSM中的压缩区域存在剧烈的扩散性变化,这可能有助于更好地理解CSM的病理生理学。我们的结果表明,使用当前的成像和后处理方案,可以通过Belter灰色/白质对比,高对象间再现性和诊断能力来实现脊柱DTI。

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