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fMRI Reveals a Novel Region for Evaluating Acoustic Information for Mate Choice in a Female Songbird

机译:FMRI揭示了一种在女性鸣禽中评估伴侣选择的声学信息的新区域

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Selection of sexual partners is among the most critical decisions that individuals make and is therefore strongly shaped by evolution. In social species, where communication signals can convey substantial information about the identity, state, or quality of the signaler, accurate interpretation of communication signals for mate choice is crucial. Despite the importance of social information processing, to date, relatively little is known about the neurobiological mechanisms that contribute to sexual decision making and preferences. In this study, we used a combination of whole-brain functional magnetic resonance imaging (fMRI), immediate early gene expression, and behavior tests to identify the circuits that are important for the perception and evaluation of courtship songs in a female songbird, the zebra finch (Taeniopygia guttata). Female zebra finches are sensitive to subtle differences in male song performance and strongly prefer the longer, faster, and more stereotyped courtship songs to non-courtship renditions. Using BOLD fMRI and EGR1 expression assays, we uncovered a novel region involved in auditory perceptual decision making located in a sensory integrative region of the avian central nidopallium outside the traditionally studied auditory forebrain pathways. Changes in activity in this region in response to acoustically similar but categorically divergent stimuli showed stronger parallels to behavioral responses than an auditory sensory region. These data highlight a potential role for the caudocentral nidopallium (NCC) as a novel node in the avian circuitry underlying the evaluation of acoustic signals and their use in mate choice.
机译:选择性伙伴的选择是个人制造的最关键的决定之一,因此被进化强烈地形成。在社交物种中,如果通信信号可以传达关于信令的身份,状态或质量的大量信息,则对交配选择的通信信号准确地解释至关重要。尽管社会信息处理的重要性,迄今为止,迄今为止,也令人着眼于有助于性决策和偏好的神经生物学机制。在这项研究中,我们使用了全脑功能磁共振成像(FMRI),即时早期基因表达的组合,以及行为测试,以确定对Zebrab的女性鸣禽对求爱歌曲感知和评估非常重要的电路雀(Taeniopygia Guttata)。雌性斑马雀对男性歌曲性能的微妙差异很敏感,并且强烈更喜欢较长,更快,更令人思索的求爱歌曲对非求爱演变。使用大胆的FMRI和EGR1表达测定,我们发现了一种新的区域,涉及位于传统上学习的听觉前脑途径之外的禽中的中央卵石化的感官综合区域中的听觉感知决策。响应于声学相似但分类发散刺激的该区域的活动的变化显示出比听觉感觉区域更强的相似性与行为响应。这些数据突出了Caudencentral Nidopalalium(NCC)作为声电路中的禽电电路中的新节点的潜在作用及其在伴侣选择中的使用。

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