首页> 外文期刊>Stress: the international journal on the biology of stress >Electroconvulsive stimulations prevent stress-induced morphological changes in the hippocampus.
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Electroconvulsive stimulations prevent stress-induced morphological changes in the hippocampus.

机译:电惊厥刺激可防止应激引起的海马体形态变化。

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摘要

Stress can precipitate major depression and other disorders linked to hippocampal shrinkage. It is hypothesized but not established that treatment of these disorders reverses and prevents the hippocampal changes. Dendritic retraction of individual neurons might in concert with other pathophysiological events contribute to the shrinkage phenomenon. Animal studies have shown that various stress paradigms can induce dendritic retraction in the CA3 pyramidal neurons of the hippocampus. Since electroconvulsive treatment is the most effective treatment in humans with major depression, we investigated whether repeated electroconvulsive stimulations (ECSs) could influence such changes in stressed rats. Furthermore, we investigated whether ECSs per se could influence neuronal branching and total length of the CA3 hippocampal neuronal dendritic tree in normal rats. Rats were stressed using the 21-day 6 h daily restraint stress paradigm. The study shows that stress caused remodelling of the pyramidal neurons by significantly reducing the number of dendritic branch points and total length of the apical dendritic tree. Concomitant administration of ECSs prevented these effects. ECSs had no effect on pyramidal neuron dendrites in normal rats.
机译:压力会导致严重的抑郁症和其他与海马萎缩有关的疾病。假设但尚未确定这些疾病的治疗可以逆转并预防海马改变。单个神经元的树突回缩可能与其他病理生理事件一起导致收缩现象。动物研究表明,各种应激范例均可在海马CA3锥体神经元中诱导树突回缩。由于电惊厥治疗是重度抑郁症患者最有效的治疗方法,因此我们研究了反复的电惊厥刺激(ECS)是否会影响压力大鼠的这种变化。此外,我们调查了ECS本身是否会影响正常大鼠的神经元分支和CA3海马神经元树突树的总长度。使用21天每天6小时的束缚应激范例对大鼠施加压力。研究表明,应力通过显着减少树突分支点的数量和顶端树突树的总长度而引起锥体神经元的重塑。伴随使用ECS可以防止这些影响。 ECS对正常大鼠的锥体神经元树突没有影响。

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