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Can Diffusion MRI Reveal Stroke-Induced Microstructural Changes in GM?

机译:扩散MRI可以揭示脑电图诱导的GM诱导的微观结构变化吗?

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The development of noninvasive techniques to image the human brain has enabled the demonstration of structural plasticity in response to motor learning. In the last years evidence has emerged on the potential of some measures derived from diffusion Magnetic Resonance Imaging (DMRI) as numerical biomarkers of tissue changes in regions involved in the motor network. In these works, the descriptors were extensively analysed in contralateral white matter (WM) along both single connections and networks relying on tract-based analyses and statistical evaluation. Though, their ability to detect changes in gray matter (GM) has been scarcely investigated. This work aims at the assessment of propagator-based microstructural indices in capturing GM changes and the relation of such changes to functional recovery at six months from the injury focusing on the Diffusion Tensor Imaging (DTI) and the three dimensional Simple Harmonics Oscillator based Reconstruction and Estimation (3D-SHORE) models.
机译:非侵入性技术的图像对人体脑的发展使得能够响应于电机学习的结构可塑性。在过去几年中,已经出现了源自扩散磁共振成像(DMRI)的一些措施的潜力,作为电机网络中涉及的区域的组织变化的数值生物标志物。在这些作品中,沿着依赖于基于散射的分析和统计评估的单一连接和网络,在对侧白质(WM)中广泛分析描述符。虽然,他们发现灰质(GM)的变化的能力几乎已经调查。这项工作旨在评估捕获转基因变化的传播式微观结构指数,并在六个月内从重点关注扩散张量成像(DTI)和基于三维简单谐波振荡器的重建和基于三维简单谐波振荡器的重建和基于三维简单谐波振荡器的重建和估计(3D岸)模型。

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