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An Inhibitory Interface Gates Impulse Traffic between the Input and Output Stations of the Amygdala

机译:抑制接口控制杏仁核输入和输出站之间的脉冲流量

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摘要

The central amygdaloid nucleus projects to brainstem and hypothalamic nuclei mediating fear responses and receives convergent sensory inputs from the basolateral amygdaloid complex. However, interposed between the basolateral complex and central nucleus is a string of interconnected GABAergic cell clusters, the intercalated cell masses. Here, we analyzed how intercalated neurons influence impulse traffic between the basolateral complex and central nucleus using whole-cell recordings, microstimulation, and local application of glutamate receptor antagonists in brain slices. Our results suggest that intercalated neurons receive glutamatergic inputs from the basolateral complex and generate feedforward inhibition in neurons of the central nucleus. As the position of the recording site was shifted medially, intercalated cells projected to gradually more medial sectors of the central nucleus and were maximally responsive to progressively more medial stimulation sites in the basolateral complex. Thus, there is a lateromedial correspondence between the position of intercalated cells, their projection site in the central nucleus, and the source of their excitatory afferents in the basolateral complex. In addition, basolateral stimulation sites eliciting maximal excitatory responses in intercalated neurons were flanked laterally by sites eliciting prevalently inhibitory responses via the activation of intercalated cells located more laterally. As a result, the feedforward inhibition generated by intercalated neurons and, indirectly, the amplitude of the responses of central neurons could be increased or decreased depending on which combination of amygdala nuclei are activated and in what sequence. Thus, the output of the central nucleus depends not only on the nature and intensity of sensory inputs but also on their timing and origin.
机译:杏仁中央核投射到脑干和下丘脑核,介导恐惧反应,并从基底外侧杏仁核复合体接收会聚的感觉输入。但是,在基底外侧复合体和中央核之间插入了一串相互连接的GABA能细胞簇,即插入的细胞团。在这里,我们使用全细胞记录,微刺激和谷氨酸受体拮抗剂在脑切片中的局部应用,分析了插层神经元如何影响基底外侧复合体和中央核之间的冲动交通。我们的结果表明,插入的神经元从基底外侧复合体接收谷氨酸能输入,并在中枢神经元中产生前馈抑制。由于记录位点的位置向内侧移动,所以插入的细胞投射到中央核的逐渐更多的内侧扇区,并且最大程度地响应了基底外侧复合物中越来越多的内侧刺激位点。因此,在插层细胞的位置,它们在中央核中的投射部位以及它们在基底外侧复合体中的兴奋性传入源之间存在着拉近的对应关系。另外,在插层神经元中引起最大兴奋性反应的基底外侧刺激位点在侧翼两侧是通过激活位于更外侧的插层细胞而引起普遍抑制性反应的位点。结果,取决于杏仁核的哪种组合被激活以及以什么顺序被激活,由插入神经元产生的前馈抑制以及间接地中枢神经元反应的幅度可以增加或减小。因此,中心核的输出不仅取决于感觉输入的性质和强度,还取决于它们的时间和起源。

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