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Neural Encoding of Odors during Active Sampling and in Turbulent Plumes

机译:主动采样期间和湍流羽中气味的神经编码

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摘要

Sensory inputs are often fluctuating and intermittent, yet animals reliably utilize them to direct behavior. Here we ask how natural stimulus fluctuations influence the dynamic neural encoding of odors. Using the locust olfactory system, we isolated two main causes of odor intermittency: chaotic odor plumes and active sampling behaviors. Despite their irregularity, chaotic odor plumes still drove dynamic neural response features including the synchronization, temporal patterning, and short-term plasticity of spiking in projection neurons, enabling classifier-based stimulus identification and activating downstream decoders (Kenyon cells). Locusts can also impose odor intermittency through active sampling movements with their unrestrained antennae. Odors triggered immediate, spatially targeted antennal scanning that, paradoxically, weakened individual neural responses. However, these frequent but weaker responses were highly informative about stimulus location. Thus, not only are odor-elicited dynamic neural responses compatible with natural stimulus fluctuations and important for stimulus identification, but locusts actively increase intermittency, possibly to improve stimulus localization.
机译:感觉输入通常是波动的和断断续续的,但是动物可靠地利用它们来指导行为。在这里,我们问自然刺激波动如何影响气味的动态神经编码。使用蝗虫嗅觉系统,我们分离出臭味间歇性的两个主要原因:混乱的臭味羽流和主动采样行为。尽管它们不规则,但混乱的气味羽流仍推动了动态神经反应功能,包括投影神经元中突波的同步,时间模式和短期可塑性,从而使基于分类器的刺激识别和激活下游解码器(Kenyon细胞)成为可能。蝗虫还可以通过不受约束的触角主动采样运动来增强气味的连续性。气味触发了即时的,针对空间的触角扫描,这自相矛盾地削弱了个体的神经反应。但是,这些频繁但较弱的响应对刺激的位置很有帮助。因此,气味引起的动态神经反应不仅与自然刺激波动兼容,并且对于刺激识别很重要,而且蝗虫积极地增加了间歇性,可能改善了刺激的定位。

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