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Odors Pulsed at Wing Beat Frequencies are Tracked by Primary Olfactory Networks and Enhance Odor Detection

机译:通过主嗅觉网络跟踪在翼拍频率处脉动的气味,并增强气味检测

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摘要

Each down stroke of an insect's wings accelerates axial airflow over the antennae. Modeling studies suggest that this can greatly enhance penetration of air and air-born odorants through the antennal sensilla thereby periodically increasing odorant-receptor interactions. Do these periodic changes result in entrainment of neural responses in the antenna and antennal lobe (AL)? Does this entrainment affect olfactory acuity? To address these questions, we monitored antennal and AL responses in the moth Manduca sexta while odorants were pulsed at frequencies from 10–72 Hz, encompassing the natural wingbeat frequency. Power spectral density (PSD) analysis was used to identify entrainment of neural activity. Statistical analysis of PSDs indicates that the antennal nerve tracked pulsed odor up to 30 Hz. Furthermore, at least 50% of AL local field potentials (LFPs) and between 7–25% of unitary spiking responses also tracked pulsed odor up to 30 Hz in a frequency-locked manner. Application of bicuculline (200 μM) abolished pulse tracking in both LFP and unitary responses suggesting that GABAA receptor activation is necessary for pulse tracking within the AL. Finally, psychophysical measures of odor detection establish that detection thresholds are lowered when odor is pulsed at 20 Hz. These results suggest that AL networks can respond to the oscillatory dynamics of stimuli such as those imposed by the wing beat in a manner analogous to mammalian sniffing.
机译:昆虫翅膀的每次向下冲程都会加速触角上方的轴向气流。模型研究表明,这可以大大增强空气和空气中的气味剂通过触角感应器的渗透,从而定期增加气味剂-受体的相互作用。这些周期性变化是否会导致触角和触角(AL)出现神经反应?这种夹带会影响嗅觉敏锐度吗?为了解决这些问题,我们监测了天蛾蛾的触角和AL反应,同时以10-72 responsesHz的频率脉动加味剂,其中包括自然的脉动频率。功率谱密度(PSD)分析用于识别神经活动的夹带。 PSD的统计分析表明,触手神经跟踪的脉冲气味高达30 Hz。此外,至少50%的AL局部电场电势(LFP)和7-25%的单一峰值响应之间也以锁频的方式跟踪了高达30 Hz的脉冲气味。双小分子(200μm)的使用取消了LFP和单一反应中的脉冲追踪,这表明GABAA受体激活对于AL内的脉冲追踪是必要的。最后,气味检测的心理物理措施可以确定,当以20 Hz的频率发出气味时,检测阈值会降低。这些结果表明,AL网络可以以类似于哺乳动物嗅探的方式,响应诸如翅膀拍打所施加的刺激的振荡动力学。

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