Takahashi T T, Konishi M
Beckman Laboratories of Behavioral Biology, California Institute of Technology, Pasadena 91125.
J Comp Neurol. 1988 Aug 8;274(2):212-38. doi: 10.1002/cne.902740207.
Interaural phase and intensity are cues by which the barn owl determines, respectively, the azimuth and elevation of a sound source. Physiological studies indicate that phase and intensity are processed independently in the auditory brainstem of the barn owl. The phases of spectral components of a sound are encoded in nucleus magnocellularis (NM), one of the two cochlear nuclei. NM projects solely and bilaterally to nucleus laminaris (NL), wherein interaural phase difference is computed. The other cochlear nucleus, nucleus angularis (NA), encodes the amplitudes of spectral components of sounds. We report here the projections of NA and NL to the lateral lemniscal nuclei of the barn owl. The lateral lemniscal complex comprises nucleus olivaris superior (SO); nucleus lemnisci lateralis, pars ventralis (LLv); and nucleus ventralis lemnisci lateralis (VLV). At caudal levels, VLV may be divided into a posterior (VLVp) and an anterior (VLVa) subdivision on cytoarchitectonic grounds. At rostral levels, the cytoarchitectural differences diminish and the boundaries between the two subdivisions become obscured. Likewise, our data from anterograde tracing studies suggest that at caudal levels the terminal fields of NA and NL remain confined to VLVp and VLVa, respectively. They merge, however, at rostral levels. The data also suggest that NL projects to the medial portion of the ipsilateral SO and that NA projects bilaterally to all parts of SO and LLv. Studies with the retrograde transport of horseradish peroxidase confirm these projections.
双耳间的相位和强度是谷仓猫头鹰分别用于确定声源方位和仰角的线索。生理学研究表明,相位和强度在谷仓猫头鹰的听觉脑干中是独立处理的。声音频谱成分的相位在两个耳蜗核之一的大细胞层(NM)中编码。NM仅双侧投射到层状核(NL),在NL中计算双耳相位差。另一个耳蜗核,角状核(NA),编码声音频谱成分的幅度。我们在此报告NA和NL向谷仓猫头鹰外侧丘系核的投射。外侧丘系复合体包括上橄榄核(SO);外侧丘系核腹侧部(LLv);以及外侧丘系腹侧核(VLV)。在尾部水平,根据细胞构筑学,VLV可分为后部分(VLVp)和前部分(VLVa)。在嘴侧水平,细胞构筑学差异减小,两个部分之间的边界变得模糊。同样,我们顺行追踪研究的数据表明,在尾部水平,NA和NL的终末场分别局限于VLVp和VLVa。然而,在嘴侧水平它们会合并。数据还表明,NL投射到同侧SO的内侧部分,而NA双侧投射到SO和LLv的所有部分。辣根过氧化物酶逆行运输的研究证实了这些投射。