首页> 外文期刊>Journal of neurobiology >Seasonal changes in avian song control circuits do not cause seasonal changes in song discrimination in song sparrows.
【24h】

Seasonal changes in avian song control circuits do not cause seasonal changes in song discrimination in song sparrows.

机译:鸟类歌曲控制电路中的季节性变化不会导致麻雀的歌曲辨别力出现季节性变化。

获取原文
获取原文并翻译 | 示例
       

摘要

In seasonally breeding songbirds, brain nuclei of the song control system that act in song perception change in size between seasons. It has been hypothesized that seasonal regression of song nuclei may impair song discrimination. We tested this hypothesis in song sparrows (Melospiza melodia), a species in which males share song types with neighbors and must discriminate between similar songs in territorial interactions. We predicted that song sparrows with regressed song systems would have greater difficulty in discriminating between similar songs. Sparrows were housed either on short days (SD) and had regressed song circuits, or were exposed to long days and implanted with testosterone (LD+T) to induce full growth of the song circuits. We conducted two experiments using a GO/NO-GO operant conditioning paradigm to measure song discrimination ability of each group. Birds learned four (experiment 1) or three (experiment 2) pairs of song types sequentially, with each pair more similar in the number of shared song elements and thus more difficult to discriminate. Circulating T levels differed between the SD and LD+T groups. The telencephalic song nuclei HVc, RA, and area X were larger in the LD+T birds. The two groups of sparrows did not differ, however, in their ability to learn to discriminate between shared song types, regardless of the songs' similarity. These results suggest that seasonal changes in the song control system do not affect birds' ability to make difficult song discriminations.
机译:在季节性繁殖的鸣禽中,起作用于歌曲感知的歌曲控制系统的脑核在不同季节之间会发生大小变化。据推测,歌曲核的季节退化可能损害歌曲的辨别力。我们在歌曲麻雀(Melospiza melodia)中测试了这个假设,该物种中的雄性与邻居共享歌曲类型,并且必须在区域互动中区分相似的歌曲。我们预测,具有退化歌曲系统的麻雀会在区分相似歌曲方面有更大的难度。将麻雀放在短时间内(SD)饲养并使其歌曲循环退化,或将它们暴露于漫长的日子并植入睾丸激素(LD + T)以诱导歌曲循环完全生长。我们使用GO / NO-GO操作员条件范式进行了两个实验,以测量每个组的歌曲辨别能力。 Birds依次学习了四对(实验1)或三对(实验2)歌曲类型,每对在共享歌曲元素的数量上更加相似,因此更加难以区分。 SD和LD + T组之间的循环T水平有所不同。 LD + T禽类的末梢神经核HVc,RA和X区域较大。两组麻雀在学习区分共享歌曲类型的能力上没有差异,而无论这些歌曲的相似性如何。这些结果表明,歌曲控制系统的季节性变化不会影响鸟类做出困难歌曲区分的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号