Halle F, Gahr M, Kreutzer M
Laboratoire d' Ethologie et de Cognition Comparées, Université Paris X, 92000 Nanterre, France.
J Neurobiol. 2003 Sep 15;56(4):303-14. doi: 10.1002/neu.10230.
Bird song is a model for studying neural control and lateralization of a learned behavior. Adult male canary develops large and varied song repertoires. Particular features of the male are well known to stimulate the reproductive activities of the female. We report here on the effect of lesions of either the left or right HVC, a key nucleus of the descending vocal control network of songbirds, on different song parameters of common domesticated male canaries of an European outbred strain. These canaries are useful to evaluate the question of central versus peripheral lateralization because they do not show syringeal dominance for syllable production compared to the previously studied canary strains. Right-sided lesions reduced the highest frequency and the widest frequency band. Left-sided lesion increased the lowest frequency. The size of the left-sided lesions correlated with the reduction of the repertoire of simple syllables, of the total repertoire and of the highest repetition rate, and with the increase of the lowest frequency. These results suggest a lateralized specialization of both left and right vocal pathways for particular features of the song, especially those that are known to elicit a great number of copulation solicitation displays (CSD). Lesions of both left and right pathways affected, however, sound amplitude of all syllables. Because this effect was more sever following left-sided lesions, and because the syrinx morphology of canaries has a left-right asymmetry, we suggest a peripheral mechanism for the observed lateralized specializations.
鸟鸣是研究习得行为的神经控制和偏侧化的模型。成年雄性金丝雀会发展出大量多样的鸣唱曲目。雄性金丝雀的特定特征众所周知会刺激雌性的繁殖活动。我们在此报告,对鸣禽下行发声控制网络的关键核团——左侧或右侧HVC进行损伤,对一种欧洲远交系普通家养雄性金丝雀的不同鸣唱参数所产生的影响。这些金丝雀有助于评估中枢与外周偏侧化的问题,因为与之前研究的金丝雀品系相比,它们在音节产生方面不存在鸣管优势。右侧损伤降低了最高频率和最宽频带。左侧损伤增加了最低频率。左侧损伤的大小与简单音节曲目、总曲目以及最高重复率的减少,以及最低频率的增加相关。这些结果表明,左右发声通路在歌曲的特定特征方面存在偏侧化特化,尤其是那些已知会引发大量求偶展示(CSD)的特征。然而,左右通路的损伤均影响了所有音节的声音振幅。由于左侧损伤后的这种影响更为严重,并且由于金丝雀的鸣管形态存在左右不对称,我们提出了一种外周机制来解释所观察到的偏侧化特化现象。