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1 ive cells within the inferior colliculus and superior olivary complex.
2 eive efferent innervation originating in the superior olivary complex.
3 zoid body and periolivary cell groups in the superior olivary complex.
4 vels in both neuropil and neurons within the superior olivary complex.
5 igeminal nerve, the cochlear nucleus and the superior olivary complex.
6 ly from separate populations of cells in the superior olivary complex.
7  preparation of the cochlear nucleus and the superior olivary complex.
8 as common in neurons in structures above the superior olivary complex.
9 ing was examined in the cochlear nucleus and superior olivary complex.
10 ganglion innervates the cochlear nucleus and superior olivary complex.
11  cochlear nuclei via a synaptic relay in the superior olivary complex.
12  lateral to the medial superior olive of the superior olivary complex.
13                                       In the superior olivary complex, 5-HT-IR somata were observed i
14 lso seen in the shell regions of the lateral superior olivary complex and in periolivary regions.
15 olivocochlear (MOC) neurons originate in the superior olivary complex and project to the cochlea, whe
16 ns of olivocochlear neurons originate in the superior olivary complex and project to the cochlea.
17  and CB-expressing neurons with GAD67 in the superior olivary complex and the inferior colliculus of
18 zable to other populations of neurons of the superior olivary complex and to other regions of the cen
19  colliculi, nuclei of the lateral lemniscus, superior olivary complex, and cochlear nuclear complex.
20 ojection neurons in the inferior colliculus, superior olivary complex, and contralateral cochlear nuc
21 cleus of the lateral lemniscus, parts of the superior olivary complex, and divisions of the cochlear
22 scending input from the cochlear nuclei, the superior olivary complex, and the nuclei of the lateral
23 niculate body, and some of the nuclei of the superior olivary complex; and in the dorsolateral funicu
24 the cochlear nucleus to include at least the superior olivary complex as well.
25  was infrequently observed in neurons of the superior olivary complex but was common in neurons in st
26 ubstantia nigra, ventral tegmental area, and superior olivary complex, but was also found at moderate
27 brainstem-mediated efferent pathway from the superior olivary complex by way of the medial olivocochl
28 ggest that upregulation of inhibition in the superior olivary complex can explain the electrophysiolo
29 cleus were examined, but only those from the superior olivary complex contained significant numbers o
30 ost prominent periolivary nucleus of the cat superior olivary complex, form an important component of
31 rome oxidase staining up to the level of the superior olivary complex indicated the presence of abnor
32 itory inputs, including projections from the superior olivary complex, inferior colliculus, and audit
33 tral cochlear nucleus, some divisions of the superior olivary complex, inferior colliculus, medial ge
34                                          The superior olivary complex is a source of ascending projec
35         The present results suggest that the superior olivary complex is the most important extrinsic
36 tion from neurons within and surrounding the superior olivary complex of the brainstem.
37  (CGRP) and its mRNA was investigated in the superior olivary complex of the hamster in order to bett
38 Neurons of the MOC system are located in the superior olivary complex, particularly in the dorsomedia
39 hat these PNN markers are not present in the superior olivary complex (SOC) at birth, but develop ove
40   Auditory temporal processing occurs in the superior olivary complex (SOC) in the brainstem, where i
41                                          The superior olivary complex (SOC) is an essential auditory
42  nucleus of the trapezoid body (MNTB) in the superior olivary complex (SOC) is an inhibitory hub cons
43                        In the brainstem, the superior olivary complex (SOC) is crucial for the comput
44  cochlea, the cochlear nucleus (CN), and the superior olivary complex (SOC) of Fisher 344 rats.
45 emonstrated significant dysmorphology in the superior olivary complex (SOC), a collection of auditory
46 s, but little attention has been paid to the superior olivary complex (SOC), a constellation of nucle
47 ation to examine all nuclei within the human superior olivary complex (SOC), an important auditory br
48 nucleus (VCN) and project bilaterally to the superior olivary complex (SOC).
49 evalent inhibitory transmitter in the mature superior olivary complex (SOC).
50 uded bilaterally the principal nuclei of the superior olivary complex, some periolivary regions, and
51 ght cochlear nuclei to identify cells in the superior olivary complex that project bilaterally.
52  tuning across frequency in neurons from the superior olivary complex, the dorsal nucleus of the late
53 ateral lemniscus, and the main nuclei of the superior olivary complex; the other part (zone 2) receiv

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