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Mating Signals Indicating Sexual Receptiveness Induce Unique Spatio-Temporal EEG Theta Patterns in an Anuran Species

机译:表明性接受的交配信号导致无性物种的独特时空脑电图θ模式。

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摘要

Female mate choice is of importance for individual fitness as well as a determining factor in genetic diversity and speciation. Nevertheless relatively little is known about how females process information acquired from males during mate selection. In the Emei music frog, Babina daunchina, males normally call from hidden burrows and females in the reproductive stage prefer male calls produced from inside burrows compared with ones from outside burrows. The present study evaluated changes in electroencephalogram (EEG) power output in four frequency bands induced by male courtship vocalizations on both sides of the telencephalon and mesencephalon in females. The results show that (1) both the values of left hemispheric theta relative power and global lateralization in the theta band are modulated by the sexual attractiveness of the acoustic stimulus in the reproductive stage, suggesting the theta oscillation is closely correlated with processing information associated with mate choice; (2) mean relative power in the beta band is significantly greater in the mesencephalon than the left telencephalon, regardless of reproductive status or the biological significance of signals, indicating it is associated with processing acoustic features and (3) relative power in the delta and alpha bands are not affected by reproductive status or acoustic stimuli. The results imply that EEG power in the theta and beta bands reflect different information processing mechanisms related to vocal recognition and auditory perception in anurans.
机译:雌性配偶的选择对于个体适应性以及遗传多样性和物种形成的决定性因素都很重要。然而,关于雌性如何处理在选择配偶时从雄性获得的信息的知之甚少。在峨眉音乐蛙,Babina daunchina中,雄性通常是从隐性洞穴挖出的,而雌性处于生殖阶段的则是雄性从内部挖出的,而不是外部洞穴。本研究评估了女性在端脑和中脑两侧的男性求爱发声所诱发的四个频带中的脑电图(EEG)功率输出的变化。结果表明(1)生殖阶段声学刺激的性吸引力调节了theta波段中左半球theta相对功率和全局偏侧化的值,这表明theta振荡与处理信息相关。伴侣选择; (2)不论生殖状态或信号的生物学意义如何,中脑中β波段的平均相对功率均显着大于左端脑,表明其与处理声学特征有关;(3)三角洲和α谱带不受生殖状态或听觉刺激的影响。结果表明,theta和beta频段的EEG功率反映了与无脊椎动物的声音识别和听觉相关的不同信息处理机制。

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