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哺乳动物嗅球中的动态集成气味编码:不同时间尺度上的感官信息

Dynamic ensemble odor coding in the mammalian olfactory bulb: sensory information at different timescales.

作者信息

Bathellier Brice, Buhl Derek L, Accolla Riccardo, Carleton Alan

机构信息

Flavour Perception Group, Brain Mind Institute, Ecole Polytechnique Fédérale de Lausanne, Lausanne (EPFL), CH-1015, Switzerland.

出版信息

Neuron. 2008 Feb 28;57(4):586-98. doi: 10.1016/j.neuron.2008.02.011.

Abstract

Neural firing discharges are often temporally patterned, but it is often ambiguous as to whether the temporal features of these patterns constitute a useful code. Here we show in the mouse olfactory bulb that ensembles of projection neurons respond with complex odor- and concentration-specific dynamic activity sequences developing below and above sniffing frequency. Based on this activity, almost optimal discrimination of presented odors was possible during single sniffs, consistent with reported behavioral data. Within a sniff cycle, slower features of the dynamics alone (>100 ms resolution, including mean firing rate) were sufficient for maximal discrimination. A smaller amount of information was also observed in faster features down to 20-40 ms resolution. Therefore, mitral cell ensemble activity contains information at different timescales that could be separately or complementarily exploited by downstream brain centers to make odor discriminations. Our results also support suggestive analogies in the dynamics of odor representations between insects and mammals.

摘要

神经放电通常具有时间模式,但这些模式的时间特征是否构成一种有用的编码往往并不明确。在这里,我们在小鼠嗅球中发现,投射神经元群体以复杂的、特定于气味和浓度的动态活动序列做出反应,这些序列在嗅吸频率上下发展。基于这种活动,在单次嗅吸过程中几乎可以对呈现的气味进行最优辨别,这与已报道的行为数据一致。在一个嗅吸周期内,仅动力学的较慢特征(分辨率>100毫秒,包括平均放电率)就足以实现最大辨别。在分辨率低至20 - 40毫秒的较快特征中也观察到了较少的信息。因此,二尖瓣细胞群体活动在不同时间尺度上包含信息,下游脑区可以分别或互补地利用这些信息来进行气味辨别。我们的结果还支持了昆虫和哺乳动物之间气味表征动态的暗示性类比。

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