Schofield B R, Cant N B
Neuroscience Group, Division of Basic Biomedical Sciences, University of South Dakota School of Medicine, Vermillion 57069, USA.
J Comp Neurol. 1999 Jun 28;409(2):210-23. doi: 10.1002/(sici)1096-9861(19990628)409:2<210::aid-cne3>3.0.co;2-a.
Multiple retrograde and anterograde tracers were used to characterize a pathway that extends from the inferior colliculus to both the left and right cochlear nuclei via a synaptic relay in the superior olivary complex. Different fluorescent tracers were injected into the left and right cochlear nuclei to identify cells in the superior olivary complex that project bilaterally. Double-labeled cells were present in almost all periolivary nuclei; the majority were located in the ventral nucleus of the trapezoid body and the anteroventral periolivary nucleus. Because these two nuclei are targets of descending projections from the inferior colliculus, triple-labeling experiments were performed to determine whether collicular axons contact the periolivary cells that project to the cochlear nuclei. The results demonstrate that descending axons from the inferior colliculus contact periolivary cells that project to the cochlear nuclei, including periolivary cells that project bilaterally. This pathway could provide an opportunity for higher levels of the auditory system to influence activity bilaterally in the cochlear nuclei and thus to modulate the initial processing of acoustic information by the brain.
使用多种逆行和顺行示踪剂来描绘一条从下丘经上橄榄复合体中的突触中继延伸至左右耳蜗核的通路。将不同的荧光示踪剂注入左右耳蜗核,以识别在上橄榄复合体中双侧投射的细胞。几乎在所有橄榄周核中都存在双标记细胞;大多数位于斜方体腹侧核和前腹侧橄榄周核。由于这两个核是下丘下行投射的靶点,因此进行了三重标记实验,以确定下丘轴突是否与投射至耳蜗核的橄榄周细胞接触。结果表明,下丘的下行轴突与投射至耳蜗核的橄榄周细胞接触,包括双侧投射的橄榄周细胞。这条通路可能为听觉系统的更高层次提供机会,以双侧影响耳蜗核的活动,从而调节大脑对声学信息的初始处理。