Mello C V, Vates G E, Okuhata S, Nottebohm F
Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA.
J Comp Neurol. 1998 Jun 1;395(2):137-60.
Here, we examine the connectivity of two previously identified telencephalic stations of the auditory system of adult zebra finches, the neostriatal "shelf" that underlies the high vocal center (HVC) and the archistriatal "cup" adjacent to the robust nucleus of the archistriatum (RA). We used different kinds of neuroanatomical tracers to visualize the projections from the shelf to the HVC. In addition, we show that the shelf projects to the cup and that the cup projects to thalamic, midbrain, and pontine nuclei of the ascending auditory pathway. Our observations extend to songbirds anatomical features that are found in the auditory pathways of a nonoscine bird, the pigeon (Wild et al. [1993] J. Comp. Neurol. 337:32-62), and we suggest that the descending auditory projections found in mammals may also be a general property of the avian brain. Finally, we show that the oscine song control system is closely apposed to auditory pathways at many levels. Our observations may help in understanding the evolution and organization of networks for vocal communication and vocal learning in songbirds.
在此,我们研究成年斑胸草雀听觉系统中两个先前确定的端脑区域的连接性,即构成高级发声中枢(HVC)基础的新纹状体“层架”以及与古纹状体粗核(RA)相邻的古纹状体“杯状结构”。我们使用了不同类型的神经解剖学示踪剂来可视化从层架到HVC的投射。此外,我们发现层架投射到杯状结构,且杯状结构投射到听觉上行通路的丘脑、中脑和脑桥核。我们的观察结果扩展到鸣禽中在非鸣禽鸽子(Wild等人,[1993]《比较神经学杂志》337:32 - 62)听觉通路中发现的解剖学特征,并且我们认为在哺乳动物中发现的下行听觉投射可能也是鸟类大脑的一个普遍特征。最后,我们表明鸣禽的发声控制系统在许多层面上与听觉通路紧密相邻。我们的观察结果可能有助于理解鸣禽中用于发声交流和发声学习的网络的进化与组织。