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首页> 外文期刊>Brain pathology >Hydrocephalus compacted cortex and hippocampus and altered their output neurons in association with spatial learning and memory deficits in rats
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Hydrocephalus compacted cortex and hippocampus and altered their output neurons in association with spatial learning and memory deficits in rats

机译:脑菌浓缩的皮质和海马,并改变了他们的输出神经元与大鼠的空间学习和记忆缺陷相关联

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Hydrocephalus is a common neurological disorder in children characterized by abnormal dilation of cerebral ventricles as a result of the impairment of cerebrospinal fluid flow or absorption. Clinical presentation of hydrocephalus varies with chronicity and often shows cognitive dysfunction. Here we used a kaolin-induction method in rats and studied the effects of hydrocephalus on cerebral cortex and hippocampus, the two regions highly related to cognition. Hydrocephalus impaired rats' performance in Morris water maze task. Serial three-dimensional reconstruction from sections of the whole brain freshly froze in situ with skull shows that the volumes of both structures were reduced. Morphologically, pyramidal neurons of the somatosensory cortex and hippocampus appear to be distorted. Intracellular dye injection and subsequent three-dimensional reconstruction and analyses revealed that the dendritic arbors of layer III and V cortical pyramid neurons were reduced. The total dendritic length of CA1, but not CA3, pyramidal neurons was also reduced. Dendritic spine densities on both cortical and hippocampal pyramidal neurons were decreased, consistent with our concomitant findings that the expressions of both synaptophysin and postsynaptic density protein 95 were reduced. These cortical and hippocampal changes suggest reductions of excitatory connectivity, which could underlie the learning and memory deficits in hydrocephalus.
机译:脑积水是由于脑脊液流动或吸收的损害,儿童的常见神经障碍是脑室的异常扩张。脑积水的临床介绍因慢性而变化,并且通常显示认知功能障碍。在这里,我们在大鼠中使用了高岭土诱导方法,并研究了脑皮球菌对脑皮质和海马的影响,这两个地区与认知有关的两个地区。羟麦片病人在莫里斯水迷宫任务中的表现。串行三维重建从整个大脑的段新鲜冻结原位与头骨表明,两种结构的体积都减少了。形态学上,躯体感染术皮质和海马的金字塔神经元似乎被扭曲。细胞内染料注射和随后的三维重建和分析表明,层III和V皮质金字塔神经元的树突仲件被降低。 Ca1的总树突长度,但不是Ca3,金字塔神经元也减少。皮质和海马金字塔神经元的树突脊柱密度减少,与我们伴随的结果一致,即突触蛋白和突触后密度蛋白质95的表达减少。这些皮质和海马改变表明兴奋性连通性的减少,这可能是脑积水中的学习和记忆缺陷。

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