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初级嗅觉网络中刺激间歇性的对比度增强及其行为意义。

Contrast enhancement of stimulus intermittency in a primary olfactory network and its behavioral significance.

作者信息

Lei Hong, Riffell Jeffrey A, Gage Stephanie L, Hildebrand John G

机构信息

University of Arizona, Tucson, 85721-0077, USA.

出版信息

J Biol. 2009;8(2):21. doi: 10.1186/jbiol120. Epub 2009 Feb 20.

Abstract

BACKGROUND

An animal navigating to an unseen odor source must accurately resolve the spatiotemporal distribution of that stimulus in order to express appropriate upwind flight behavior. Intermittency of natural odor plumes, caused by air turbulence, is critically important for many insects, including the hawkmoth, Manduca sexta, for odor-modulated search behavior to an odor source. When a moth's antennae receive intermittent odor stimulation, the projection neurons (PNs) in the primary olfactory centers (the antennal lobes), which are analogous to the olfactory bulbs of vertebrates, generate discrete bursts of action potentials separated by periods of inhibition, suggesting that the PNs may use the binary burst/non-burst neural patterns to resolve and enhance the intermittency of the stimulus encountered in the odor plume.

RESULTS

We tested this hypothesis first by establishing that bicuculline methiodide reliably and reversibly disrupted the ability of PNs to produce bursting response patterns. Behavioral studies, in turn, demonstrated that after injecting this drug into the antennal lobe at the effective concentration used in the physiological experiments animals could no longer efficiently locate the odor source, even though they had detected the odor signal.

CONCLUSIONS

Our results establish a direct link between the bursting response pattern of PNs and the odor-tracking behavior of the moth, demonstrating the behavioral significance of resolving the dynamics of a natural odor stimulus in antennal lobe circuits.

摘要

背景

动物导航至一个看不见的气味源时,必须准确解析该刺激的时空分布,以便表现出适当的逆风飞行行为。由空气湍流导致的自然气味羽流的间歇性,对于许多昆虫,包括烟草天蛾(Manduca sexta)追踪气味源的气味调制搜索行为至关重要。当蛾的触角接收到间歇性气味刺激时,初级嗅觉中枢(触角叶,类似于脊椎动物的嗅球)中的投射神经元(PNs)会产生由抑制期分隔的离散动作电位爆发,这表明PNs可能利用二元爆发/非爆发神经模式来解析和增强在气味羽流中遇到的刺激的间歇性。

结果

我们首先通过确定甲基荷包牡丹碱能可靠且可逆地破坏PNs产生爆发反应模式的能力来检验这一假设。行为研究进而表明,在将这种药物以生理实验中使用的有效浓度注入触角叶后,动物即使检测到了气味信号,也不再能够有效地定位气味源。

结论

我们的结果在PNs的爆发反应模式与蛾的气味追踪行为之间建立了直接联系,证明了在触角叶回路中解析自然气味刺激动态的行为意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b10/2687775/f9caf2686be2/jbiol120-1.jpg

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