首页> 外文期刊>Brain Structure and Function >Diffusion tensor MRI with tract-based spatial statistics and histology reveals undiscovered lesioned areas in kainate model of epilepsy in rat
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Diffusion tensor MRI with tract-based spatial statistics and histology reveals undiscovered lesioned areas in kainate model of epilepsy in rat

机译:扩散张量MRI结合基于区域的空间统计数据和组织学显示了大鼠癫痫的海藻酸盐模型中未发现的病变区域

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In this study, we used tract-based spatial statistics (TBSS) to analyze diffusion tensor MR imaging (DTI) data acquired from the rat brain, ex vivo, for the first time. The aim was to highlight potential changes in the whole brain anatomy in the kainic acid model of epilepsy, and further characterize the changes with histology. Increased FA was observed in dorsal endopiriform nucleus, external capsule, corpus callosum, dentate gyrus, thalamus, and optic tract. A decrease in FA was seen in the horizontal limb of the diagonal band, stria medullaris, habenula, entorhinal cortex, and superior colliculus. Some of the areas have been described in kainic acid model before. However, we also found regions that to our knowledge have not been previously reported to undergo structural changes, in this model, including stria medullaris, nucleus of diagonal band, habenula, superior colliculus, external capsule, corpus callosum, and optic tract. Four of the areas highlighted in TBSS (dentate gyrus, entorhinal cortex, thalamus and stria medullaris) were analyzed in more detail with Nissl, Timm, and myelin-stained histological sections, and with polarized light microscopy. TBSS together with targeted histology confirmed that DTI changes were associated with altered myelination, neurodegeneration, and/or calcification of the tissue. Our data demonstrate that DTI in combination with TBSS has a great potential to facilitate the discovery of previously undetected anatomical changes in animal models of brain diseases.
机译:在这项研究中,我们首次使用基于道的空间统计(TBSS)分析了从大鼠大脑离体获得的扩散张量MR成像(DTI)数据。目的是突出在癫痫的凯南酸模型中全脑解剖结构的潜在变化,并通过组织学进一步表征变化。在背内膜状核,外囊,call体,齿状回,丘脑和视神经道中观察到FA增加。在对角带的水平肢,延髓纹,哈贝努拉,内嗅皮层和上丘中可见FA减少。之前在海藻酸模型中已经描述了一些区域。但是,我们还发现,据我们所知,在该模型中以前没有报道过发生过结构变化的区域,包括纹状体,对角带核、,、上丘,外囊,call体和视神经束。使用Nissl,Timm和髓磷脂染色的组织学切片以及偏光显微镜对TBSS中突出显示的四个区域(齿状回,内嗅皮层,丘脑和髓质纹)进行了更详细的分析。 TBSS与靶向组织学一起证实DTI改变与组织的髓鞘变性,神经变性和/或钙化改变有关。我们的数据表明,DTI与TBSS结合具有巨大的潜力,可促进发现脑疾病动物模型中以前未发现的解剖变化。

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