Oliver D L
Department of Anatomy, University of Connecticut Health Center, Farmington 06032.
J Comp Neurol. 1987 Oct 1;264(1):24-46. doi: 10.1002/cne.902640104.
The projections to the inferior colliculus of the cat are shown in autoradiographs after injections of 3H-amino acids into the anteroventral cochlear nucleus and anterograde axonal transport. Labeled bands of axons are seen in the central nucleus of the inferior colliculus, parallel to the fibrodendritic laminae, and in layers 3 and 4 of the dorsal cortex. A bilateral projection to the lateral, low-frequency part of the inferior colliculus is observed. In contrast, the more ventromedial, mid- and high-frequency parts receive only a contralateral input. The projections from the cochlear nucleus to both the contralateral midbrain and bilaterally to the superior olivary complex appear to be tonotopically organized. After HRP injections in the inferior colliculus, small numbers of stellate neurons are labeled in the lateral and ventral low-frequency parts of the anteroventral cochlear nucleus on the ipsilateral side. EM autoradiographs show labeled axonal endings from both sides of the anteroventral cochlear nuclei are present in the same proportion in pars lateralis. Axonal endings from either cochlear nucleus have small, round synaptic vesicles and make asymmetric synaptic contacts on dendrites. Axons from the contralateral side also make axosomatic contacts on large disc-shaped or stellate cells. Neurons from the ipsilateral anteroventral cochlear nucleus apparently make more synaptic endings per cell as compared to neurons from the contralateral side. Together, bilateral inputs from the anteroventral cochlear nucleus can account for a third of the endings with round synaptic vesicles in pars lateralis of the central nucleus. Morphological similarities among the ascending inputs to the inferior colliculus are discussed. Both direct circuits from the cochlear nucleus to the inferior colliculus and indirect circuits via the superior olivary complex or lateral lemniscus may display banding patterns, nucleotopic organization, or differential synaptic organization. The direct inputs from the anteroventral cochlear nucleus to the colliculus may influence binaural interactions which occur in the superior olivary complex. In addition, direct inputs may create new binaural responses in the inferior colliculus that are independent of lower centers.
在将³H-氨基酸注入猫的前腹侧蜗神经核并进行顺行轴突运输后,通过放射自显影显示了投射到猫下丘的情况。在下丘中央核中可见与纤维树突层平行的轴突标记带,以及在背侧皮质的第3层和第4层中也有。观察到下丘外侧低频部分存在双侧投射。相比之下,更腹内侧的中高频部分仅接受对侧输入。从蜗神经核到对侧中脑以及双侧到上橄榄复合体的投射似乎是按音频拓扑组织的。在下丘注射辣根过氧化物酶(HRP)后,同侧前腹侧蜗神经核的外侧和腹侧低频部分有少量星形神经元被标记。电子显微镜放射自显影片显示,前腹侧蜗神经核两侧的标记轴突终末在外侧部以相同比例存在。来自任一蜗神经核的轴突终末都有小的圆形突触小泡,并在树突上形成不对称突触联系。来自对侧的轴突也在大的盘状或星形细胞上形成轴体突触联系。与对侧的神经元相比,同侧前腹侧蜗神经核的神经元每个细胞显然形成更多突触终末。总之,前腹侧蜗神经核的双侧输入可占中央核外侧部中具有圆形突触小泡的终末的三分之一。文中讨论了下丘上行输入之间的形态学相似性。从蜗神经核到下丘的直接通路以及通过上橄榄复合体或外侧丘系的间接通路都可能表现出带状模式、音频拓扑组织或不同的突触组织。前腹侧蜗神经核到下丘的直接输入可能影响在上橄榄复合体中发生的双耳相互作用。此外,直接输入可能在下丘中产生独立于低位中枢的新的双耳反应。