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在蝗虫触角叶模型网络中通过时间绑定对气味进行编码。

Coding of odors by temporal binding within a model network of the locust antennal lobe.

机构信息

Department of Mathematics, Duke University Durham, NC, USA.

出版信息

Front Comput Neurosci. 2013 Apr 25;7:50. doi: 10.3389/fncom.2013.00050. eCollection 2013.

Abstract

The locust olfactory system interfaces with the external world through antennal receptor neurons (ORNs), which represent odors in a distributed, combinatorial manner. ORN axons bundle together to form the antennal nerve, which relays sensory information centrally to the antennal lobe (AL). Within the AL, an odor generates a dynamically evolving ensemble of active cells, leading to a stimulus-specific temporal progression of neuronal spiking. This experimental observation has led to the hypothesis that an odor is encoded within the AL by a dynamically evolving trajectory of projection neuron (PN) activity that can be decoded piecewise to ascertain odor identity. In order to study information coding within the locust AL, we developed a scaled-down model of the locust AL using Hodgkin-Huxley-type neurons and biologically realistic connectivity parameters and current components. Using our model, we examined correlations in the precise timing of spikes across multiple neurons, and our results suggest an alternative to the dynamic trajectory hypothesis. We propose that the dynamical interplay of fast and slow inhibition within the locust AL induces temporally stable correlations in the spiking activity of an odor-dependent neural subset, giving rise to a temporal binding code that allows rapid stimulus detection by downstream elements.

摘要

蝗虫的嗅觉系统通过触角感觉神经元 (ORNs) 与外部世界进行交互,ORNs 以分布式、组合的方式代表气味。ORN 轴突捆绑在一起形成触角神经,将感觉信息中继到中央的触角叶 (AL)。在 AL 中,一种气味会产生一组活跃的细胞的动态演变,从而导致神经元放电的刺激特异性时间进展。这一实验观察导致了这样的假设,即气味是由投射神经元 (PN) 活动的动态演变轨迹在 AL 中编码的,可以分段解码以确定气味身份。为了研究蝗虫 AL 中的信息编码,我们使用 Hodgkin-Huxley 型神经元和具有生物现实性的连接参数和电流分量,开发了蝗虫 AL 的缩小模型。使用我们的模型,我们检查了多个神经元中尖峰精确时间的相关性,我们的结果提出了对动态轨迹假说的替代方案。我们提出,蝗虫 AL 内快速和慢速抑制的动态相互作用会在依赖气味的神经亚群的放电活动中产生时间稳定的相关性,从而产生一种时间绑定代码,允许下游元件快速检测刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f641/3635028/2d8360923b6a/fncom-07-00050-g0001.jpg

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