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Role of Reuniens Nucleus Projections to the Medial Prefrontal Cortex and to the Hippocampal Pyramidal CA1 Area in Associative Learning

机译:Reuniens核投射对内侧前额叶皮层和海马金字塔形CA1区在联想学习中的作用。

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摘要

We studied the interactions between short- and long-term plastic changes taking place during the acquisition of a classical eyeblink conditioning and following high-frequency stimulation (HFS) of the reuniens nucleus in behaving mice. Synaptic changes in strength were studied at the reuniens-medial prefrontal cortex (mPFC) and the reuniens-CA1 synapses. Input/output curves and a paired-pulse study enabled determining the functional capabilities of the two synapses and the optimal intensities to be applied at the reuniens nucleus during classical eyeblink conditioning and for HFS applied to the reuniens nucleus. Animals were conditioned using a trace paradigm, with a tone as conditioned stimulus (CS) and an electric shock to the trigeminal nerve as unconditioned stimulus (US). A single pulse was presented to the reuniens nucleus to evoke field EPSPs (fEPSPs) in mPFC and CA1 areas during the CS-US interval. No significant changes in synaptic strength were observed at the reuniens-mPFC and reuniens-CA1 synapses during the acquisition of eyelid conditioned responses (CRs). Two successive HFS sessions carried out during the first two conditioning days decreased the percentage of CRs, without evoking any long-term potentiation (LTP) at the recording sites. HFS of the reuniens nucleus also prevented the proper acquisition of an object discrimination task. A subsequent study revealed that HFS of the reuniens nucleus evoked a significant decrease of paired-pulse facilitation. In conclusion, reuniens nucleus projections to prefrontal and hippocampal circuits seem to participate in the acquisition of associative learning through a mechanism that does not required the development of LTP.
机译:我们研究了在经典的眨眼条件的获得过程中以及行为小鼠的高频共振(HFS)后,短期和长期塑性变化之间的相互作用。研究了突触-中前额叶皮层(mPFC)和突触-CA1突触强度的突触变化。输入/输出曲线和成对脉冲研究使得能够确定两个突触的功能能力以及在经典眨眼条件下应用于骨核的最佳强度以及应用于骨核的HFS。使用痕量范式对动物进行条件处理,以调性作为条件性刺激(CS),对三叉神经进行电击作为条件性刺激(US)。在CS-US间隔期间,单个脉冲被呈递给骨核,以引起mPFC和CA1区域的野外EPSP(fEPSP)。在获取眼睑条件反应(CR)期间,在reuniens-mPFC和reuniens-CA1突触中未观察到突触强度的显着变化。在头两天的调节期内进行了两次连续的HFS会话,降低了CR的百分比,而没有在记录位点引起任何长期增强(LTP)。骨核的HFS也阻止了物体识别任务的正确获取。随后的研究表明,重核的HFS引起配对脉冲促进的显着降低。总之,通过不需要LTP的机制,骨核对前额和海马回路的投射似乎参与了联想学习。

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