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首页> 外文期刊>Hearing Research: An International Journal >Ontogeny of auditory brainstem responses in the bat, Phyllostomus discolor
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Ontogeny of auditory brainstem responses in the bat, Phyllostomus discolor

机译:蝙蝠中听觉脑干反应的组织发生,Phyllostomus褪色

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摘要

Hearing is the primary sensory modality in bats, but its development is poorly studied. For newborns, hearing appears essential in maintaining contact with their mothers and to develop echolocation abilities. Here we measured auditory brainstem responses (ABRs) to clicks and narrowband tone pips covering a large frequency range (5-90 kHz) in juveniles (p7 to p200) and adults of the bat, Phyllostomus discolor. Tone-pip audiograms show that juveniles at p7 are already quite responsive, not only below 20 kHz but up to 90 kHz. Hearing sensitivity increases further until about p14 and is then refined, possibly correlated with growth and differentiation of the animals' outer ears. ABR amplitudes decrease within the first 3-4 months, inversely correlated with the bat weight and forearm length. ABR Wave I latency decreases with increasing stimulation level. ABR duration (measured between Waves I and V) is longer in juveniles and shortens with age which may reflect temporal refinement of auditory brainstem neurons to accommodate the exceptional temporal precision required for effective echolocation. Overall our data show that P. discolor bats have good hearing very early in life. The current method represents a fast and minimally invasive way of characterizing basic hearing in bats. (C) 2018 Published by Elsevier B.V.
机译:听证会是蝙蝠中的主要感觉方式,但它的发展研究得很差。对于新生儿来说,听力似乎在与母亲的接触方面并开发回声机会能力。在这里,我们测量了听觉脑干响应(ABR)点击覆盖少年(P7至P200)和蝙蝠的成年人的大频率范围(5-90 kHz)和蝙蝠,Phyllostomus褪色剂的窄带音点。 Tone-Pip AudioGrams显示P7的少年已经非常响应,不仅低于20 kHz,但高达90 kHz。听力灵敏度进一步增加,直到P14约为P14,然后精制,可能与动物外耳的生长和分化相关。 ABR振幅在前3-4个月内降低,与蝙蝠重量和前臂长度相反。 ABR WAVE I延迟随着刺激水平的增加而降低。 ABR持续时间(在Waves I和V之间测量)较长的少年较长,随着年龄的增长,可能反映听觉脑干神经元的时间细化,以适应有效呼应所需的特殊时间精度。总的来说我们的数据显示,P. Discolor蝙蝠在生活中很早就听到了很好的听证会。目前的方法代表了蝙蝠基本听力的快速和微创方式。 (c)2018由elsevier b.v发布。

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