首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >External tufted cells drive the output of olfactory bulb glomeruli.
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External tufted cells drive the output of olfactory bulb glomeruli.

机译:外部簇状细胞驱动嗅球肾小球的输出。

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摘要

Odors synchronize the activity of olfactory bulb mitral cells that project to the same glomerulus. In vitro, a slow rhythmic excitation intrinsic to the glomerular network persists, even in the absence of afferent input. We show here that a subpopulation of juxtaglomerular cells, external tufted (ET) cells, may trigger this rhythmic activity. We used paired whole-cell recording and Ca(2+) imaging in bulb slices from wild-type and transgenic mice expressing the fluorescent Ca(2+) indicator protein GCaMP-2. Slow, periodic population bursts in mitral cells were synchronized with spontaneous discharges in ET cells. Moreover, activation of a single ET cell was sufficient to evoke population bursts in mitral cells within the same glomerulus. Stimulation of the olfactory nerve induced similar population bursts and activated ET cells at a lower threshold than mitral cells, suggesting that ET cells mediate feedforward excitation of mitral cells. We propose that ET cells act as essential drivers of glomerular output to the olfactory cortex.
机译:气味使投射到相同肾小球的嗅球二尖瓣细胞的活动同步。在体外,即使在没有传入输入的情况下,肾小球网络固有的缓慢的节律性兴奋仍然持续。我们在这里显示,近肾小球细胞亚群,外部簇状(ET)细胞,可能会触发这种节律性活动。我们使用成对的全细胞记录和Ca(2+)成像在表达荧光Ca(2+)指示蛋白GCaMP-2的野生型和转基因小鼠的鳞茎切片中。二尖瓣细胞中缓慢,周期性的群体爆发与ET细胞中的自发放电同步。此外,单个ET细胞的激活足以引起同一肾小球内二尖瓣细胞的群体爆发。嗅觉神经的刺激诱导了类似的群体爆发,并以比二尖瓣细胞更低的阈值激活了ET细胞,这表明ET细胞介导了二尖瓣细胞的前馈激发。我们建议ET细胞充当嗅球向肾小球输出的重要驱动力。

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