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Activation of Calcium Binding Protein-ir Neurons in Medial Amygdala during Chemosignal Processing

机译:化学加工过程中内侧杏仁钙中钙结合蛋白-RE神经元的活化

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The medial amygdala receives sensory input from chemical signals important in mammalian social communication. As measured by immediate-early gene expression, its responses to different chemosignals differ in the spatial patterns of neuronal activation and in the types of cells activated. Medial amygdala projections to basal forebrain contribute to generation of appropriate behavioral responses and GABA neurons are important for these functions, both as interneurons and as projection neurons. Here we investigate responses of male golden-hamster medial amygdala neurons expressing immunoreactivity (ir) for calbindin (CB), calretinin (CR) and parvalbumin (PV), calcium binding proteins (CBPs), which can distinguish different GABAergic neuron types. CB-ir and CR-ir cells had significant responses to female hamster chemosignals and showed different spatial patterns across medial amygdala. Responses to chemosignals from unfamiliar females were significantly reduced in males with sexual experience, compared with naive males. Medial amygdala did not express PV-ir cells and the adjacent intercalated nucleus, which has been implicated in medial amygdala chemosensory responses did not express any of the CBPs investigated here. This additional evidence for chemosensory specificity in the response of medial amygdala to social chemical signals, in cells characterized by CBP expression, suggests multiple GABA circuit elements may be involved in information processing for behavioral response.
机译:内侧Amygdala从哺乳动物社交沟通中的化学信号中获得感官输入。如通过立即早期基因表达测量的,对不同化学物质的反应在神经元激活的空间模式和激活的细胞类型中不同。基础前脑的内侧杏仁叶突起有助于产生适当的行为反应,而GABA神经元对这些功能很重要,无论是中间核素还是作为投影神经元。在这里,我们研究了对Calbindin(Cb),Calretinin(Cr)和Parvalbumin(PV),钙结合蛋白(CBP)表达免疫反应性(IR)的雄性金黄仓鼠内侧杏仁蛋白(IR)的响应,可以区分不同的胃肠杆菌类型。 CB-IR和Cr-IR细胞对雌性仓鼠化学物质有重大反应,并且在内侧杏仁达拉展示了不同的空间模式。与幼小雄性相比,在性经验中,雄性的雄性对来自不熟悉的女性的化学物质的反应显着降低。内侧杏仁达拉未表达PV-IR细胞,并且相邻的插层核,其在内侧杏仁型化学感应响应中没有表达此处调查的任何CBP。在由CBP表达表达的特征的细胞中,在内侧杏仁达拉对社会化学信号的响应中进行化学感性特异性的额外证据表明,多个GABA电路元件可以参与行为响应的信息处理。

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