首页> 外文期刊>The Journal of Physiology >Reciprocal intraglomerular excitation and intra- and interglomerular lateral inhibition between mouse olfactory bulb mitral cells.
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Reciprocal intraglomerular excitation and intra- and interglomerular lateral inhibition between mouse olfactory bulb mitral cells.

机译:小鼠嗅球二尖瓣细胞之间的相互肾小球内兴奋以及肾小球内和肾小球之间的侧向抑制。

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摘要

How patterns of odour-evoked glomerular activity are transformed into patterns of mitral cell action potentials (APs) in the olfactory bulb is determined by the functional connectivity of the cell populations in the bulb. We have used paired whole-cell voltage recordings from olfactory bulb slices to compare the functional connectivity of mitral cells to the known anatomy of the mitral cell network. Both inhibitory and excitatory coupling were observed between pairs of mitral cells. Inhibitory coupling was seen as an increased frequency of small, asynchronous GABAergic IPSPs following APs in the presynaptic cell. Excitatory coupling was short in latency, beginning about 1.3 ms after the presynaptic AP and was mediated by both NMDA and AMPA receptors. Mitral cell pairs were coupled by excitation if and only if their apical dendrites terminated in the same glomerulus. The excitatory coupling between mitral cells resembles conventional fast synaptic transmission in its time course, amplitude and latency, despite the absence of evidence for anatomically defined synapses between mitral cells.
机译:嗅球中气味诱发的肾小球活动的模式如何转化为二尖瓣细胞动作电位(APs)的模式取决于球中细胞群的功能连通性。我们已经使用来自嗅球切片的成对全细胞电压记录来比较二尖瓣细胞与二尖瓣细胞网络的已知解剖结构的功能连通性。在二尖瓣细胞对之间观察到抑制性和兴奋性偶联。抑制性耦合被认为是继突触前细胞中的AP后,小型异步GABA能IPSP的频率增加。兴奋性偶联的潜伏期短,始于突触前AP后约1.3毫秒,并由NMDA和AMPA受体介导。当且仅当它们的顶端树突终止于相同的肾小球时,二尖细胞对才被激发耦合。尽管没有证据表明二尖瓣细胞之间的解剖学定义突触,但二尖瓣细胞之间的兴奋性偶联在时间,幅度和潜伏期却类似于常规的快速突触传递。

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