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On-Center/Inhibitory-Surround Decorrelation via Intraglomerular Inhibition in the Olfactory Bulb Glomerular Layer

机译:通过嗅球肾小球层的肾小球内抑制进行中心/抑制性周围去相关

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摘要

Classical lateral inhibition, which relies on spatially ordered neural representations of physical stimuli, cannot decorrelate sensory representations in which stimulus properties are represented non-topographically. Recent theoretical and experimental studies indicate that such a non-topographical representation of olfactory stimuli predominates in olfactory bulb, thereby refuting the classical view that olfactory decorrelation is mediated by lateral inhibition comparable to that in the retina. Questions persist, however, regarding how well non-topographical decorrelation models can replicate the inhibitory “surround” that has been observed experimentally (with respect to odor feature-similarity) in olfactory bulb principal neurons, analogous to the spatial inhibitory surround generated by lateral inhibition in retina. Using two contrasting scenarios of stimulus representation – one “retinotopically” organized and one in which receptive fields are unpredictably distributed as they are in olfactory bulb – we here show that intracolumnar inhibitory interactions between local interneurons and principal neurons successfully decorrelate similar sensory representations irrespective of the scenario of representation. In contrast, lateral inhibitory interactions between these same neurons in neighboring columns are only able to effectively decorrelate topographically organized representations. While anatomical substrates superficially consistent with both types of inhibition exist in olfactory bulb, of the two only local intraglomerular inhibition suffices to mediate olfactory decorrelation.
机译:经典的侧向抑制依赖于物理刺激的空间排序的神经表示,不能取消以非地形方式表示刺激特性的感觉表示。最近的理论和实验研究表明,嗅觉刺激的这种非地形表示形式占主导地位,从而驳斥了经典的观点,即嗅觉去相关是由与视网膜相当的侧向抑制介导的。但是,关于非地形解相关模型如何复制嗅球主要神经元中实验观察到的(关于气味特征相似性)抑制性“周围环境”的问题仍然存在疑问,类似于横向抑制产生的空间抑制性周围环境。在视网膜中。使用两种不同的刺激表现方案–一种“视网膜组织”的组织结构,以及一种在嗅球中不可预测的感受野分布–我们在这里表明,局部中间神经元和主要神经元之间的柱内抑制相互作用成功地将相似的感觉表征相关联。代表性的场景。相比之下,相邻列中这些相同神经元之间的横向抑制性相互作用只能有效地解除地形组织的表示的相关性。尽管在嗅球中存在与两种抑制类型表面一致的解剖基质,但仅有的两种局部肾小球内抑制作用足以介导嗅解相关。

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