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Probing myelin and axon abnormalities separately in psychiatric disorders using MRI techniques.使用 MRI 技术分别探测精神障碍中的髓鞘和轴突异常。
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Quantitative MRI in the very preterm brain: assessing tissue organization and myelination using magnetization transfer, diffusion tensor and T₁ imaging.极早产儿脑的定量 MRI:应用磁化传递、弥散张量和 T₁ 成像评估组织结构和髓鞘形成。
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中风后未损伤运动网络中髓鞘和轴突重塑的定量分析

Quantitative Analysis of Myelin and Axonal Remodeling in the Uninjured Motor Network After Stroke.

作者信息

Lin Ying-Chia, Daducci Alessandro, Meskaldji Djalel Eddine, Thiran Jean-Philippe, Michel Patrik, Meuli Reto, Krueger Gunnar, Menegaz Gloria, Granziera Cristina

机构信息

1 Department of Computer Science, University of Verona , Verona, Italy .

2 STI/IEL/LTS5 , Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland .

出版信息

Brain Connect. 2015 Sep;5(7):401-12. doi: 10.1089/brain.2014.0245. Epub 2014 Dec 23.

DOI:10.1089/brain.2014.0245
PMID:25296185
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4575543/
Abstract

Contralesional brain connectivity plasticity was previously reported after stroke. This study aims at disentangling the biological mechanisms underlying connectivity plasticity in the uninjured motor network after an ischemic lesion. In particular, we measured generalized fractional anisotropy (GFA) and magnetization transfer ratio (MTR) to assess whether poststroke connectivity remodeling depends on axonal and/or myelin changes. Diffusion-spectrum imaging and magnetization transfer MRI at 3T were performed in 10 patients in acute phase, at 1 and 6 months after stroke, which was affecting motor cortical and/or subcortical areas. Ten age- and gender-matched healthy volunteers were scanned 1 month apart for longitudinal comparison. Clinical assessment was also performed in patients prior to magnetic resonance imaging (MRI). In the contralesional hemisphere, average measures and tract-based quantitative analysis of GFA and MTR were performed to assess axonal integrity and myelination along motor connections as well as their variations in time. Mean and tract-based measures of MTR and GFA showed significant changes in a number of contralesional motor connections, confirming both axonal and myelin plasticity in our cohort of patients. Moreover, density-derived features (peak height, standard deviation, and skewness) of GFA and MTR along the tracts showed additional correlation with clinical scores than mean values. These findings reveal the interplay between contralateral myelin and axonal remodeling after stroke.

摘要

先前有报道称中风后对侧脑连接可塑性存在。本研究旨在阐明缺血性损伤后未受损运动网络中连接可塑性的生物学机制。具体而言,我们测量了广义分数各向异性(GFA)和磁化传递率(MTR),以评估中风后连接重塑是否取决于轴突和/或髓鞘变化。对10例影响运动皮层和/或皮层下区域的中风急性期患者、中风后1个月和6个月的患者进行了3T的扩散光谱成像和磁化传递MRI检查。10名年龄和性别匹配的健康志愿者每隔1个月进行一次扫描以进行纵向比较。在患者进行磁共振成像(MRI)之前也进行了临床评估。在对侧半球,对GFA和MTR进行平均测量和基于束的定量分析,以评估沿运动连接的轴突完整性和髓鞘形成以及它们随时间的变化。MTR和GFA的平均测量值和基于束的测量值显示,许多对侧运动连接存在显著变化,证实了我们患者队列中的轴突和髓鞘可塑性。此外,沿束的GFA和MTR的密度衍生特征(峰值高度、标准差和偏度)与临床评分的相关性比平均值更高。这些发现揭示了中风后对侧髓鞘和轴突重塑之间的相互作用。