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An Interglomerular Circuit Gates Glomerular Output and Implements Gain Control in the Mouse Olfactory Bulb

机译:一个球间电路门控肾小球输出并在鼠标嗅球中实现增益控制

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摘要

Odors elicit distributed activation of glomeruli in the olfactory bulb (OB). Crosstalk between co-active glomeruli has been proposed to perform a variety of computations, facilitating efficient extraction of sensory information by the cortex. Dopaminergic/GABAergic cells in the OB, which can be identified by their expression of the dopamine transporter (DAT), provide the earliest opportunity for such crosstalk. Here we show in mice that DAT+ cells carry concentration-dependent odor signals and broadcast focal glomerular inputs throughout the OB to cause suppression of mitral/tufted (M/T) cell firing, an effect that is mediated by the external tufted (ET) cells coupled to DAT+ cells via chemical and electrical synapses. We find that DAT+ cells implement gain control and decorrelate odor representations in the M/T cell population. Our results further indicate that ET cells are gatekeepers of glomerular output and prime determinants of M/T responsiveness.
机译:气味在嗅球(OB)中引起肾小球的分布活化。已经提出了互动肾小球之间的串扰以执行各种计算,从而促进了皮质有效地提取感官信息。 OB中的多巴胺能/ GABA能细胞可以通过其多巴胺转运蛋白(DAT)的表达来鉴定,为此类串扰提供了最早的机会。在这里,我们在小鼠中显示DAT +细胞携带浓度依赖性的气味信号,并在整个OB内传播局灶性肾小球输入,从而抑制二尖瓣/簇状(M / T)细胞的发射,这是由外部簇状(ET)细胞介导的通过化学和电气突触耦合到DAT +细胞。我们发现,DAT +细胞在M / T细胞群体中实现了增益控制并消除了气味的表达。我们的结果进一步表明,ET细胞是肾小球输出的守门人,是M / T反应性的主要决定因素。

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