首页> 美国卫生研究院文献>The Journal of Neuroscience >The Structural and Functional Differentiation of Hair Cells in a Lizards Basilar Papilla Suggests an Operational Principle of Amniote Cochleas
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The Structural and Functional Differentiation of Hair Cells in a Lizards Basilar Papilla Suggests an Operational Principle of Amniote Cochleas

机译:蜥蜴的基底乳头中毛细胞的结构和功能分化表明羊膜耳蜗的运作原理。

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摘要

The hair cells in the mammalian cochlea are of two distinct types. Inner hair cells are responsible for transducing mechanical stimuli into electrical responses, which they forward to the brain through a copious afferent innervation. Outer hair cells, which are thought to mediate the active process that sensitizes and tunes the cochlea, possess a negligible afferent innervation. For every inner hair cell, there are approximately three outer hair cells, so only one-quarter of the hair cells directly deliver information to the CNS. Although this is a surprising feature for a sensory system, the occurrence of a similar innervation pattern in birds and crocodilians suggests that the arrangement has an adaptive value. Using a lizard with highly developed hearing, the tokay gecko, we demonstrate in the present study that the same principle operates in a third major group of terrestrial animals. We propose that the differentiation of hair cells into signaling and amplifying classes reflects incompatible strategies for the optimization of mechanoelectrical transduction and of an active process based on active hair-bundle motility.
机译:哺乳动物耳蜗中的毛细胞有两种不同的类型。内毛细胞负责将机械刺激转换为电反应,并通过大量传入神经将其传递到大脑。被认为介导敏化和调节耳蜗的活跃过程的外毛细胞具有微不足道的传入神经。对于每个内部毛细胞,大约有三个外部毛细胞,因此只有四分之一的毛细胞直接将信息传递到CNS。尽管这对于感觉系统来说是令人惊讶的功能,但是在鸟类和鳄鱼中类似的神经分布模式的出现表明该布置具有适应性的价值。使用具有高度发达的听力的蜥蜴,tokay壁虎,我们在本研究中证明了相同的原理适用于第三大类陆生动物。我们提出,将毛细胞分化为信号传导和扩增类别反映了不相容的策略,以优化机电传导和基于主动毛束运动性的主动过程。

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