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Dysregulation of coordinated neuronal firing patterns in striatum of freely behaving transgenic rats that model Huntington's disease.

机译:自由行为模拟亨廷顿氏病的转基因大鼠纹状体中协调性神经元放电模式的调节异常。

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Altered neuronal activity in the striatum appears to be a key component of Huntington's disease (HD), a fatal, neurodegenerative condition. To assess this hypothesis in freely behaving transgenic rats that model HD (tgHDs), we used chronically implanted micro-wires to record the spontaneous activity of striatal neurons. We found that relative to wild-type controls, HD rats suffer from population-level deficits in striatal activity characterized by a loss of correlated firing and fewer episodes of coincident spike bursting between simultaneously recorded neuronal pairs. These results are in line with our previous report of marked alterations in the pattern of striatal firing in mouse models of HD that vary in background strain, genetic construct, and symptom severity. Thus, loss of coordinated spike activity in striatum appears to be a common feature of HD pathophysiology, regardless of HD model variability.
机译:纹状体中神经元活性的改变似乎是亨廷顿氏病(HD)的关键组成部分,这是一种致命的神经退行性疾病。为了在模拟HD(tgHDs)的行为自由的转基因大鼠中评估这一假设,我们使用了长期植入的微型导线来记录纹状体神经元的自发活动。我们发现相对于野生型对照,HD大鼠纹状体活动受到人口水平的缺陷,其特征是相关放电的丧失和同时记录的神经元对之间同时发生的尖峰爆发较少。这些结果与我们先前的报告相符,即HD小鼠模型中纹状体放电模式的显着变化,其背景背景,遗传结构和症状严重程度各不相同。因此,不管HD模型的可变性如何,纹状体中协调的尖峰活性的丧失似乎是HD病理生理学的共同特征。

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