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1 rons and between nerve cells in the inferior olivary nucleus.
2 ateral medulla, pontine nuclei, and inferior olivary nucleus.
3 t (P < 0.01) loss of neurons in the inferior olivary nucleus.
4 Fragments of label also surrounded each olivary nucleus.
5 nucleus basalis of Meynert, and the inferior olivary nucleus.
6 teral medullary region); and 7) the inferior olivary nucleus.
7 r cortex preferentially target the principal olivary nucleus.
8 ession was completely absent in the inferior olivary nucleus.
9 unctional and structural organization of the olivary nucleus and a novel experimental and theoretical
10 xcitatory projection neurons of the inferior olivary nucleus and between inhibitory interneurons of t
12 r complex, particularly the lateral superior olivary nucleus and nucleus of the trapezoid body, shows
13 nucleus, and 2.6-times in both the inferior olivary nucleus and superficial layer of the caudal spin
15 ues were reduced bilaterally at the superior olivary nucleus and/or lateral lemniscus and more signif
16 2 in substantia nigra and medullary inferior olivary nucleus, and between ADGRV1 and EFHC2 in frontal
17 in the putamen, pontine nucleus and inferior olivary nucleus between the SND and OPCA subtypes of MSA
18 cleus, and the caudal region of the inferior olivary nucleus but not in the retina and dorsal root ga
19 harmaline's ability to activate the interior olivary nucleus depends on the normal activity of the NM
21 lateral projections from the medial superior olivary nucleus in the gerbil auditory brainstem were ex
22 n inclusions were found only in the inferior olivary nucleus in the other two, one of which was the o
24 atories suggest that neurons in the inferior olivary nucleus (IO) may play a role in the modulation o
27 or dextran-rhodamine in the medial superior olivary nucleus labeled axons that ascended in the later
29 nce detection neurons in the medial superior olivary nucleus (MSO) in mammals or nucleus laminaris (N
30 in, GAL-ir neurons appeared in the pretectal olivary nucleus, oculomotor nucleus, the medial and late
32 ystems: cortical modulation of the pretectal olivary nucleus (PON), which controls the pupillary ligh
35 region of the avian brainstem, the superior olivary nucleus (SON) receives inputs from nucleus angul
36 receive inhibitory inputs from the superior olivary nucleus (SON) that greatly improve coincidence d
37 he inhibitory input provided by the superior olivary nucleus (SON) to nucleus angularis (NA), nucleus
44 om a single injection in the medial superior olivary nucleus suggest a mosaic pattern in the laminar
45 lossi, the reticular formation, the inferior olivary nucleus, the medullary raphe nuclei, the spinal
46 ing the pregeniculate nucleus, the pretectal olivary nucleus, the nucleus of the optic tract, the bra
47 of axons projecting from the medial superior olivary nucleus to the dorsal nucleus of the lateral lem
49 r colliculus, lateral lemniscus and superior olivary nucleus) were measured bilaterally in all patien