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首页> 外文期刊>eLife journal >Odor identity coding by distributed ensembles of neurons in the mouse olfactory cortex
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Odor identity coding by distributed ensembles of neurons in the mouse olfactory cortex

机译:小鼠嗅觉皮质中神经元的分布合体的气味同一性编码

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Olfactory perception and behaviors critically depend on the ability to identify an odor across a wide range of concentrations. Here, we use calcium imaging to determine how odor identity is encoded in olfactory cortex. We find that, despite considerable trial-to-trial variability, odor identity can accurately be decoded from ensembles of co-active neurons that are distributed across piriform cortex without any apparent spatial organization. However, piriform response patterns change substantially over a 100-fold change in odor concentration, apparently degrading the population representation of odor identity. We show that this problem can be resolved by decoding odor identity from a subpopulation of concentration-invariant piriform neurons. These concentration-invariant neurons are overrepresented in piriform cortex but not in olfactory bulb mitral and tufted cells. We therefore propose that distinct perceptual features of odors are encoded in independent subnetworks of neurons in the olfactory cortex.
机译:嗅觉和行为关键取决于在多种浓度范围内识别气味的能力。在这里,我们使用钙成像技术来确定嗅觉皮质中气味的编码方式。我们发现,尽管试验之间存在很大的差异,但气味特征可以从在整个梨状皮层中分布的没有任何明显空间组织的协同神经元的集合中准确解码。但是,梨状响应模式在气味浓度变化超过100倍时会发生很大变化,显然会降低气味识别的总体表现。我们表明,可以通过从浓度不变的梨状神经元亚群中解码气味身份来解决此问题。这些浓度不变的神经元在梨状皮层中过分表达,但在嗅球二尖瓣和簇状细胞中却没有。因此,我们提出气味的不同感知特征是在嗅觉皮层中神经元的独立子网络中编码的。

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