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Distinct lateral inhibitory circuits drive parallel processing of sensory information in the mammalian olfactory bulb

机译:独特的侧向抑制电路驱动哺乳动物嗅球中感官信息的并行处理

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摘要

Splitting sensory information into parallel pathways is a common strategy in sensory systems. Yet, how circuits in these parallel pathways are composed to maintain or even enhance the encoding of specific stimulus features is poorly understood. Here, we have investigated the parallel pathways formed by mitral and tufted cells of the olfactory system in mice and characterized the emergence of feature selectivity in these cell types via distinct lateral inhibitory circuits. We find differences in activity-dependent lateral inhibition between mitral and tufted cells that likely reflect newly described differences in the activation of deep and superficial granule cells. Simulations show that these circuit-level differences allow mitral and tufted cells to best discriminate odors in separate concentration ranges, indicating that segregating information about different ranges of stimulus intensity may be an important function of these parallel sensory pathways.>DOI:
机译:将感官信息分为平行途径是感官系统中的常见策略。然而,人们对这些平行路径中的电路如何构成以维持或什至增强特定刺激特征的编码知之甚少。在这里,我们研究了小鼠嗅觉系统的二尖瓣和簇状细胞形成的平行途径,并通过独特的侧向抑制回路表征了这些细胞类型中特征选择性的出现。我们发现二尖瓣和簇状细胞之间的活动依赖性侧向抑制的差异可能反映了新描述的深层和浅层颗粒细胞活化的差异。仿真表明,这些电路水平的差异使二尖瓣和簇状细胞能够在不同的浓度范围内最好地区分气味,这表明隔离有关不同刺激强度范围的信息可能是这些平行感觉途径的重要功能。> DOI:

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