Center for NeuroScience, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam 1098 XH, The Netherlands.
Center for NeuroScience, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam 1098 XH, The Netherlands
eNeuro. 2019 Aug 26;6(4). doi: 10.1523/ENEURO.0020-19.2019. Print 2019 Jul/Aug.
The perirhinal (PER) and lateral entorhinal (LEC) cortex function as a gateway for information transmission between (sub)cortical areas and the hippocampus. It is hypothesized that the amygdala, a key structure in emotion processing, can modulate PER-LEC neuronal activity before information enters the hippocampal memory pathway. This study determined the integration of synaptic activity evoked by simultaneous neocortical and amygdala electrical stimulation in PER-LEC deep layer principal neurons and parvalbumin (PV) interneurons in mouse brain slices. The data revealed that both deep layer PER-LEC principal neurons and PV interneurons receive synaptic input from the neocortical agranular insular cortex (AiP) and the lateral amygdala (LA). Furthermore, simultaneous stimulation of the AiP and LA never reached the firing threshold in principal neurons of the PER-LEC deep layers. PV interneurons however, mainly showed linear summation of simultaneous AiP and LA inputs and reached their firing threshold earlier. This early PV firing was reflected in the forward shift of the evoked inhibitory conductance in principal neurons, thereby creating a more precise temporal window for coincidence detection, which likely plays a crucial role in information processing.
边缘下区(PER)和外侧内嗅皮层(LEC)作为皮质下区域和海马体之间信息传递的门户。据推测,杏仁核作为情绪处理的关键结构,可以在信息进入海马体记忆途径之前调节 PER-LEC 神经元的活动。本研究在小鼠脑片上确定了同时进行皮质和杏仁核电刺激诱发的突触活动在 PER-LEC 深层主神经元和小清蛋白(PV)中间神经元中的整合。数据显示,PER-LEC 深层的主神经元和 PV 中间神经元均接收来自皮质颗粒状岛叶皮层(AiP)和外侧杏仁核(LA)的突触输入。此外,同时刺激 AiP 和 LA 从未达到 PER-LEC 深层主神经元的触发阈值。然而,PV 中间神经元主要表现出同时的 AiP 和 LA 输入的线性总和,并更早达到其触发阈值。这种早期的 PV 放电反映在主神经元中诱发的抑制性电导的向前移动,从而为吻合检测创造了更精确的时间窗口,这可能在信息处理中起着至关重要的作用。