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传入输入对于成年鸟类鸣叫控制回路的季节性生长和维持是必要的。

Afferent input is necessary for seasonal growth and maintenance of adult avian song control circuits.

作者信息

Brenowitz E A, Lent K

机构信息

Departments of Psychology and Zoology and Virginia Merrill Bloedel Hearing Research Center, University of Washington, Seattle, Washington 98195-1525, USA.

出版信息

J Neurosci. 2001 Apr 1;21(7):2320-9. doi: 10.1523/JNEUROSCI.21-07-02320.2001.

Abstract

The neural circuits that regulate song behavior in adult songbirds undergo pronounced seasonal changes in morphology, primarily in response to changes in plasma testosterone (T). Most song nuclei have T receptors. We asked whether seasonal growth and maintenance of nuclei within these circuits are direct responses to the effects of T or its metabolites or are mediated indirectly via the effects of T on afferent nuclei. Photosensitive white-crowned sparrows were exposed to one of three treatments. (1) The neostriatal nucleus HVc (also known as the "high vocal center") was lesioned unilaterally, and the birds were exposed to long-day (LD) photoperiods and breeding levels of T for 30 d. (2) Birds were exposed to LD plus T (LD+T) for 30 d; then HVc was lesioned, and the birds were killed after an additional 30 d exposure to LD+T. (3) HVc was lesioned, and the sparrows were housed on short-day (SD) photoperiods in the absence of T treatment for 30 d. In both LD+T groups, the direct efferent targets of HVc, the robust nucleus of the archistriatum (RA) and area X, were smaller ipsilateral to the lesion. The lesion did not prevent growth of the hypoglossal motor nucleus, which does not receive direct afferent input from HVc. RA and area X were also smaller ipsilateral to the lesion in the SD birds. These results indicate that afferent input is required both for the growth of adult song circuits in response to typical breeding photoperiod and hormone conditions and for the maintenance of efferent nuclei in either their regressed or enlarged states.

摘要

调节成年鸣禽鸣叫行为的神经回路在形态上会经历显著的季节性变化,主要是对血浆睾酮(T)变化的反应。大多数鸣叫核团都有T受体。我们研究了这些回路中核团的季节性生长和维持是对T或其代谢产物作用的直接反应,还是通过T对传入核团的作用间接介导的。将光敏白冠雀暴露于三种处理之一。(1)新纹状体核团HVC(也称为“高级发声中枢”)单侧受损,然后将这些鸟暴露于长日照(LD)光周期和繁殖水平的T中30天。(2)将鸟暴露于LD加T(LD+T)30天;然后损伤HVC,在额外暴露于LD+T 30天后处死这些鸟。(3)损伤HVC,将麻雀饲养在短日照(SD)光周期下,在无T处理的情况下饲养30天。在两个LD+T组中,HVC的直接传出靶点,即古纹状体粗核(RA)和X区,在损伤同侧较小。损伤并未阻止舌下运动核的生长,该核不接受来自HVC的直接传入输入。在SD组鸟中,RA和X区在损伤同侧也较小。这些结果表明,无论是对典型繁殖光周期和激素条件下成年鸣叫回路的生长,还是对传出核团在其退化或扩大状态下的维持,传入输入都是必需的。

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