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首页> 外文期刊>Journal of neurotrauma >Perfusional deficit and the dynamics of cerebral edemas in experimental traumatic brain injury using perfusion and diffusion-weighted magnetic resonance imaging.
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Perfusional deficit and the dynamics of cerebral edemas in experimental traumatic brain injury using perfusion and diffusion-weighted magnetic resonance imaging.

机译:使用灌注和弥散加权磁共振成像在实验性颅脑损伤中的灌注不足和脑水肿的动态。

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摘要

The aim of this work was to characterize edema dynamics, cerebral blood volume, and flow alterations in an experimental model of brain trauma using quantitative diffusion and perfusion magnetic resonance imaging (MRI). Associated with an influx of water in the intracellular space 1-5 h post-trauma as demonstrated by the 40% reduction in apparent diffusion coefficient, a 70-80% reduction in cerebral blood flow was measured within the lesioned region. Transient hypoperfusion (40-50%) was also observed in the non-traumatized contralateral hemisphere, although there was no evidence of edema formation. After the initial cytotoxic edema, a clear evolution toward extracellular water accumulation was observed, demonstrated by an increase in apparent diffusion coefficient.
机译:这项工作的目的是使用定量扩散和灌注磁共振成像(MRI)表征脑外伤实验模型中的水肿动力学,脑血容量和血流变化。如表观扩散系数降低40%所证实,与创伤后1-5 h细胞内空间中水的流入相关,在病变区域内测得的脑血流减少了70-80%。在非创伤性对侧半球也观察到短暂性灌注不足(40-50%),尽管没有水肿形成的迹象。最初的细胞毒性水肿后,观察到明显的向细胞外水积累的演变,这由表观扩散系数的增加证明。

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