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Exposure to Forced Swim Stress Alters Local Circuit Activity and Plasticity in the Dentate Gyrus of the Hippocampus

机译:暴露在强迫游泳压力下会改变海马齿状回中的局部回路活动和可塑性

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摘要

Studies have shown that, depending on its severity and context, stress can affect neural plasticity. Most related studies focused on synaptic plasticity and long-term potentiation (LTP) of principle cells. However, evidence suggests that following high-frequency stimulation, which induces LTP in principal cells, modifications also take place at the level of complex interactions with interneurons within the dentate gyrus, that is, at the local circuit level. So far, the possible effects of stress on local circuit activity and plasticity were not studied. Therefore, we set out to examine the possible alterations in local circuit activity and plasticity following exposure to stress. Local circuit activity and plasticity were measured by using frequency dependant inhibition (FDI) and commissural modulation protocols following exposure to a 15 minute-forced swim trial. Exposure to stress did not alter FDI. The application of theta-burst stimulation (TBS) reduced FDI in both control and stressed rats, but this type of plasticity was greater in stressed rats. Commissural-induced inhibition was significantly higher in stressed rats both before and after applying theta-burst stimulation. These findings indicate that the exposure to acute stress affects aspects of local circuit activity and plasticity in the dentate gyrus. It is possible that these alterations underlie some of the behavioral consequences of the stress experience.
机译:研究表明,根据其严重程度和环境,压力会影响神经可塑性。大多数相关研究集中于原理细胞的突触可塑性和长期增强(LTP)。然而,证据表明,在高频刺激下诱导主细胞中的LTP后,修饰也发生在与齿状回中的中间神经元复杂相互作用的水平,即在局部回路水平。到目前为止,尚未研究应力对局部电路活性和可塑性的可能影响。因此,我们着手研究应力作用下局部电路活动和可塑性的可能变化。暴露于15分钟的强迫游泳试验后,通过使用频率依赖性抑制(FDI)和连合调制方案来测量局部回路活动和可塑性。承受压力并没有改变外国直接投资。 θ爆发刺激(TBS)的应用可降低对照组和压力大鼠的FDI,但这种压力可塑性更大。在施加theta爆发刺激之前和之后,应激大鼠的合缝诱导抑制作用显着更高。这些发现表明,暴露于急性应激会影响齿状回的局部回路活动和可塑性方面。这些改变可能是压力经历的某些行为后果的基础。

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