首页> 外文期刊>NeuroImage >Magnetic resonance imaging of changes elicited by status epilepticus in the rat brain: diffusion-weighted and T2-weighted images, regional blood volume maps, and direct correlation with tissue and cell damage.
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Magnetic resonance imaging of changes elicited by status epilepticus in the rat brain: diffusion-weighted and T2-weighted images, regional blood volume maps, and direct correlation with tissue and cell damage.

机译:在大鼠脑中由癫痫持续状态引起的变化的磁共振成像:扩散加权和T2加权图像,局部血容量图以及与组织和细胞损伤的直接相关性。

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The rat brain was investigated with structural and functional magnetic resonance imaging (MRI) 12 h after the arrest of pilocarpine-induced status epilepticus lasting 4 h. Histopathological data, obtained immediately after MRI analysis, were correlated with the images through careful evaluation of tissue shrinkage. Diffusion-weighted and T2-weighted imaging showed changes throughout the cerebral cortex, hippocampus, amygdala, and medial thalamus. However, only T2-weighted imaging, based on rapid acquisition relaxation-enhanced sequences, revealed in the cortex inhomogeneous hyperintensity that was highest in a band corresponding to layer V. Regional cerebral blood volume (rCBV) maps were generated using T2*-weighted gradient-echo images and an ultrasmall superparamagnetic iron oxide contrast agent. In the cortex, rCBV peaked in superficial and deep bands exhibiting a distribution complementary to the highest T2-weighted intensity. Selective rCBV increase was also documented in the hippocampus and subcortical structures. In tissue sections, alterations indicative of marked edema were found with Nissl staining in areas corresponding to the highest T2-weighted intensity. Degenerating neurons, revealed by FluoroJadeB histochemistry, were instead concentrated in tissue exhibiting hyperperfusion in rCBV maps, such as hippocampal subfields and dentate gyrus, cortical layers II/III and VI, and medial thalamus. The data indicate that:(i) T2-weighted imaging provides a sensitive tool to investigate edematous brain alterations that follow sustained seizures; (ii) rCBV maps reveal regional hyperperfusion; (iii) rCBV peaks in tissue exhibiting marked neurodegeneration, which may not be selectively revealed by structural MRI. The findings provide an interpretation of the brain response to sustained seizures revealed in vivo by different strategies of MRI analysis.
机译:毛果芸香碱诱发的癫痫持续状态持续4 h后12 h,通过结构和功能磁共振成像(MRI)研究了大鼠的大脑。 MRI分析后立即获得的组织病理学数据通过仔细评估组织收缩而与图像相关联。扩散加权和T2加权成像显示整个大脑皮层,海马,杏仁核和内侧丘脑均有变化。但是,只有基于T2加权成像,基于快速采集的弛豫增强序列,才能在皮层中发现不均匀的高强度,这是在对应于V层的条带中最高的。使用T2 *加权梯度生成了局部脑血容量(rCBV)图回波图像和超小型超顺磁性氧化铁造影剂。在皮质中,rCBV在浅表带和深带中达到峰值,表现出与最高T2加权强度互补的分布。海马和皮层下结构中也有选择性的rCBV增加。在组织切片中,在对应于最高T2加权强度的区域中,通过Nissl染色发现了指示明显水肿的改变。相反,由FluoroJadeB组织化学揭示的退化神经元集中在rCBV图中表现出高灌注的组织中,例如海马亚区和齿状回,皮质层II / III和VI和丘脑内侧。数据表明:(i)T2加权成像为研究持续性癫痫发作后水肿性脑部改变提供了灵敏的工具; (ii)rCBV图显示了局部过度灌注; (iii)组织中的rCBV峰表现出明显的神经退行性变,可能无法通过结构MRI选择性显示出来。这些发现通过不同的MRI分析策略解释了大脑对体内持续发作的反应。

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