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首页> 外文期刊>Neuron >Sparse incomplete representations: a potential role of olfactory granule cells.
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Sparse incomplete representations: a potential role of olfactory granule cells.

机译:稀疏的不完整表示:嗅觉颗粒细胞的潜在作用。

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Mitral/tufted cells of the olfactory bulb receive odorant information from receptor neurons and transmit this information to the cortex. Studies in awake behaving animals have found that sustained responses of mitral cells to odorants are rare, suggesting sparse combinatorial representation of the odorants. Careful alignment of mitral cell firing with the phase of the respiration cycle revealed brief transient activity in the larger population of mitral cells, which respond to odorants during a small fraction of the respiration cycle. Responses of these cells are therefore temporally sparse. Here, we propose a mathematical model for the olfactory bulb network that can reproduce both combinatorially and temporally sparse mitral cell codes. We argue that sparse codes emerge as a result of the balance between mitral cells' excitatory inputs and inhibition provided by the granule cells. Our model suggests functional significance for the dendrodendritic synapses mediating interactions between mitral and granule cells.
机译:嗅球的二尖瓣/簇状细胞从受体神经元接收气味信息,并将该信息传递至皮层。在清醒的行为动物中进行的研究发现,很少有二尖瓣细胞对增味剂的持续反应,这暗示了增味剂的稀疏组合表示。仔细地将二尖瓣细胞的放电与呼吸周期的相位对准,发现在较大数量的二尖瓣细胞群体中出现短暂的短暂活动,这些活动在呼吸周期的一小部分对气味产生响应。这些细胞的反应因此在时间上是稀疏的。在这里,我们提出了一个嗅球网络的数学模型,该模型可以同时组合和时间上稀疏地生成二尖瓣细胞代码。我们认为稀疏代码的出现是由于二尖瓣细胞的兴奋性输入与颗粒细胞提供的抑制之间的平衡所致。我们的模型表明树突突触介导二尖瓣和颗粒细胞之间的相互作用的功能意义。

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