Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Dev Neurobiol. 2010 Sep 15;70(11):751-63. doi: 10.1002/dneu.20808.
Seasonal variation in the volume of various song control nuclei in many passerine species remains one of the best examples of naturally occurring adult neuroplasticity among vertebrates. The lateral portion of the magnocellular nucleus of the anterior nidopallium (lMAN) is a song nucleus that is important for song learning and seems to be critical for inducing variability in the song structure that is later pruned via a feedback process to produce adult crystallized song. To date, lMAN has not been shown to exhibit seasonal changes in volume, probably because it is difficult to resolve the boundaries of lMAN when employing histological methods based on Nissl staining. Here, lMAN(core) volumes were examined in intact photostimulated (i.e., breeding), castrated photostimulated and photorefractory (i.e., nonbreeding) male starlings (Sturnus vulgaris) to investigate the degree of seasonal variation in brain morphology. We present data demonstrating that the volumes of the total MAN and lMAN(core) delineated by enkephalin immunoreactivity are greater in photostimulated male starlings as compared to photorefractory males. Moreover, two other regions associated with the song system that have not been investigated previously in the context of seasonal plasticity namely (i) the medial portion of MAN (mMAN), and (ii) the nucleus interfacialis (NIf) did not display significant volumetric variation. We propose that greater lMAN(core) volumes are associated with the increase in vocal plasticity that is generally observed prior to production of stereotyped song.
季节性变化的体积在许多雀形目物种的各种歌曲控制核仍然是一个最好的例子,自然发生的成年神经可塑性在脊椎动物。大细胞的外侧部分的前脑核(lMAN)是一个重要的歌曲核学习歌曲,似乎是至关重要的诱导可变性在歌曲结构,后来修剪通过一个反馈过程产生成年结晶的歌曲。到目前为止,lMAN 尚未被证明表现出体积的季节性变化,可能是因为它很难解决的边界的 lMAN 时,采用组织学方法基于尼氏染色。在这里,lMAN(核心)的体积进行了检查完整的光刺激(即,繁殖),阉割光刺激和光反应(即,非繁殖)雄性麻雀(Sturnus vulgaris)来研究大脑形态的季节性变化程度。我们提出的数据表明,体积的总 MAN 和 lMAN(核心)划定的脑啡肽免疫反应是大于光刺激雄性麻雀相比,光反应的男性。此外,另外两个与歌曲系统,尚未进行调查以前的季节性可塑性即(一)的内侧部分的 MAN(mMAN),和(二)核 interfacialis(NIf)没有显示出显著的体积变化。我们提出,更大的 lMAN(核心)体积与增加的声乐可塑性,通常观察到之前生产的刻板歌曲。