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Entorhinal Cortex Inhibits Medial Prefrontal Cortex and Modulates the Activity States of Electrophysiologically Characterized Pyramidal Neurons In Vivo

机译:内嗅皮层抑制内侧前额叶皮层并调节体内电生理表征的锥体神经元的活动状态。

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摘要

The prefrontal cortex receives multiple inputs from the hippocampal complex, which are thought to drive memory-guided behavior. Moreover, dysfunctions of both regions have been repeatedly associated with several psychiatric disorders. Therefore, understanding the interconnections and modulatory interactions between these regions is essential in evaluating their role in behavior and pathology. The effects of entorhinal cortex (EC) stimulation on the activity of identified medial prefrontal cortex (mPFC) pyramidal neurons were examined using single-unit extracellular recordings and sharp-electrode intracellular recordings in anesthetized rats. Single-pulse electrical stimulation of EC induced a powerful inhibition in the majority of mPFC neurons examined during extracellular recording. Intracellular recording showed that EC stimulation evoked a complex synaptic response, in which the greater proportion of neurons exhibited excitatory postsynaptic events and/or a short lasting and a prolonged inhibitory postsynaptic response. Furthermore, stimulation of EC selectively produced an augmentation of the bistable up–down state only in the type 2 regular spiking neurons and in a subclass of nonintrinsic bursting neurons. Taken together, these data suggest that the potent inhibition observed following EC stimulation may mask a direct excitatory response within the mPFC which markedly potentiates the bistable states in a select subpopulation of mPFC pyramidal neurons.
机译:前额叶皮层从海马复合体接收多个输入,这些输入被认为可以驱动记忆引导的行为。此外,两个区域的功能障碍已与几种精神病反复相关。因此,了解这些区域之间的互连和调节相互作用对于评估它们在行为和病理学中的作用至关重要。内嗅皮层(EC)刺激对已识别的内侧前额叶皮层(mPFC)锥体神经元活性的影响,使用单单元细胞外记录和锐电极细胞内记录在麻醉的大鼠中进行了检查。 EC的单脉冲电刺激在细胞外记录期间检查的大多数mPFC神经元中均具有强大的抑制作用。细胞内记录显示EC刺激引起复杂的突触反应,其中较大比例的神经元表现出兴奋性突触后事件和/或持续时间短和抑制性突触后反应延长。此外,对EC的刺激仅在2型常规突突神经元和非本能爆发性神经元的一个亚类中选择性地产生了双稳态上下状态的增强。综上所述,这些数据表明,EC刺激后观察到的强抑制作用可能掩盖了mPFC内的直接兴奋反应,从而显着增强了mPFC锥体神经元选定亚群中的双稳态。

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