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The function of periglomerular cells on olfactory coding in a detailed electrophysiological model of vertebrate olfactory bulb

机译:在脊椎动物嗅球的详细电生理模型中,肾小球周围细胞对嗅编码的功能

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The activity of mitral cells is modulated by two major types of interneurons, periglomerular (PG) cells and granule cells in the olfactory bulb. Most of previous models have focused on the dendrodendritic synapses of mitral and granule cells, or mitral and PG cells, so the function of these cells has not been studied under a comparatively integrated model up to now. Here we construct a detailed electrophysiological model including GABAergic PG cells, mitral cells as well as granule cells and study the function of PG cells on olfactory coding. Compared with granule cells, PG cells have little effect on modulating the rating frequency of mitral cells, moreover, we observed that the synchronization of mitral to granule cells decreased when adding the synaptic inhibition from PG cells.
机译:二尖瓣细胞的活性受嗅球中两种主要类型的中间神经元调节,即肾小球周围(PG)细胞和颗粒细胞。以前的大多数模型都集中在二尖瓣和颗粒细胞或二尖瓣和PG细胞的树突突触上,因此到目前为止,尚未在比较集成的模型下研究这些细胞的功能。在这里,我们构建了包括GABA能的PG细胞,二尖瓣细胞以及颗粒细胞在内的详细电生理模型,并研究了PG细胞在嗅觉编码中的功能。与颗粒细胞相比,PG细胞对调节二尖瓣细胞的评级频率几乎没有影响,此外,我们观察到当添加PG细胞的突触抑制时,二尖瓣与颗粒细胞的同步性降低。

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