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变态过程中无尾目动物上橄榄核的细胞和空间变化。

Cellular and spatial changes in the anuran superior olive across metamorphosis.

作者信息

Templin Thomas, Simmons Andrea Megela

机构信息

Department of Psychology, Brown University, Providence, RI 02912, USA.

出版信息

Hear Res. 2005 Sep;207(1-2):87-98. doi: 10.1016/j.heares.2005.04.006.

Abstract

In many vertebrate species, the superior olive in the auditory brainstem plays an essential role in sound source localization. Little is known, however, about the structural and functional changes in this nucleus during development when alterations in head size and shape as well as in inner ear projections are expected to affect the perception of binaural cues. Using stereological techniques, we investigated the changes in several cellular and spatial features of the bullfrog superior olive across metamorphosis, the time period during which the animal transforms from a totally aquatic larva to a semiterrestrial adult. The total number of cells shows a strongly linear increase from hatchling through late larval stages. The number of neurons decreases during metamorphic climax stages, and recovers to pre-metamorphic climax levels in the early post-metamorphic froglet stage. The number of glial cells increases during the early larval period, and remains relatively stable, with no systematic variation, from late larval to froglet stages. The volume of the superior olive increases rapidly in early larval stages, followed by a much-attenuated rate of growth between late larval and froglet stages. These morphological changes may provide a substrate for the functional restructuring of the bullfrog superior olive, shortly before the switch from aquatic to mostly atmospheric hearing.

摘要

在许多脊椎动物物种中,听觉脑干中的上橄榄核在声源定位中起着至关重要的作用。然而,在发育过程中,当头部大小和形状以及内耳投射的变化预计会影响双耳线索的感知时,关于这个核团的结构和功能变化却知之甚少。我们使用体视学技术,研究了牛蛙上橄榄核在变态过程中的几个细胞和空间特征的变化,变态是指动物从完全水生的幼虫转变为半陆生成年动物的时期。从孵化到幼虫后期,细胞总数呈强烈的线性增加。在变态高潮阶段,神经元数量减少,并在变态后的幼蛙早期恢复到变态前高潮阶段的水平。神经胶质细胞数量在幼虫早期增加,并从幼虫后期到幼蛙阶段保持相对稳定,没有系统变化。上橄榄核的体积在幼虫早期迅速增加,随后在幼虫后期和幼蛙阶段之间生长速度大幅减缓。这些形态变化可能为牛蛙上橄榄核在从水生听觉转变为主要大气听觉之前不久的功能重组提供了基础。

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