首页> 外文期刊>The Journal of Physiology >Loss of olfactory cell adhesion molecule reduces the synchrony of mitral cell activity in olfactory glomeruli.
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Loss of olfactory cell adhesion molecule reduces the synchrony of mitral cell activity in olfactory glomeruli.

机译:嗅觉细胞粘附分子的丢失降低了嗅球中二尖瓣细胞活动的同步性。

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Odours generate activity in olfactory receptor neurons, whose axons contact the dendritic tufts of mitral cells within olfactory bulb glomeruli. These axodendritic synapses are anatomically separated from dendrodendritic synapses within each glomerulus. Mitral cells within a glomerulus show highly synchronized activity as assessed with whole-cell recording from pairs of mitral cells. We examined glomerular activity in mice lacking the olfactory cell adhesion molecule (OCAM). Glomeruli in mice lacking OCAM show a redistribution of synaptic subcompartments, but the total area occupied by axonal inputs was similar to wild-type mice. Stimulation of olfactory nerve bundles showed that excitatory synaptic input to mitral cells as well as dendrodendritic inhibition was unaffected in the knockout. However, correlated spiking in mitral cells was significantly reduced, as was electrical coupling between apical dendrites. To analyse slow network dynamics we induced slow oscillations with a glutamate uptake blocker. Evoked and spontaneous slow oscillations in mitral cells and external tufted cells were broader and had multiple peaks in OCAM knockout mice, indicating that synchrony of slow glomerular activity was also reduced. To assess the degree of shared activity between mitral cells under physiological conditions, we analysed spontaneous sub-threshold voltage oscillations using coherence analysis. Coherent activity was markedly reduced in cells from OCAM knockout mice across a broad range of frequencies consistent with a decrease in tightly time-locked activity. We suggest that synchronous activity within each glomerulus is dependent on segregation of synaptic subcompartments.
机译:气味在嗅觉受体神经元中产生活性,嗅觉受体神经元的轴突接触嗅球小球内的二尖瓣细胞的树突状簇。这些轴突突触在解剖上与每个肾小球内的树突突触分开。肾小球内的二尖瓣细胞显示出高度同步的活性,如从二尖瓣细胞对的全细胞记录所评估的。我们检查了缺乏嗅觉细胞粘附分子(OCAM)的小鼠肾小球活动。缺乏OCAM的小鼠的肾小球显示突触小室的重新分布,但轴突输入所占的总面积与野生型小鼠相似。嗅觉神经束的刺激表明,对二尖瓣细胞的兴奋性突触输入以及树突状细胞的抑制作用在敲除中不受影响。然而,二尖瓣细胞中的相关尖峰显着降低,顶端树突之间的电耦合也显着降低。为了分析慢速网络动力学,我们用谷氨酸吸收抑制剂诱导了慢速振荡。在二尖瓣细胞和外部簇状细胞中诱发和自发的缓慢振荡较宽,在OCAM敲除小鼠中具有多个峰,表明慢肾小球活动的同步性也降低了。为了评估生理条件下二尖瓣细胞之间的共享活性程度,我们使用相干分析法分析了自发性亚阈值电压振荡。在广泛的频率范围内,来自OCAM基因敲除小鼠的细胞中的相干活性显着降低,这与紧锁时间的活性降低有关。我们建议每个肾小球内的同步活动取决于突触小室的隔离。

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