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1 indirect routes through the superior lateral parabrachial nuclei.
2 c fasciculus, and ansa peduncularis from the parabrachial nuclei.
3 icerulear region, rostroventral medulla, and parabrachial nuclei.
4 dunculopontine tegmental, Kolliker-Fuse, and parabrachial nuclei.
5 tia nigra, pars compacta, raphe, and pontine parabrachial nuclei.
6 tic densities within both the vestibular and parabrachial nuclei.
7 pinal output neurons that target the lateral parabrachial nuclei.
8 lateral hypothalamic, Edinger-Westphal, and parabrachial nuclei.
9 ighest densities found in the vestibular and parabrachial nuclei.
10 t-brain pathway including the dorsal lateral parabrachial nuclei.
11 n the parastrial, tuberal, dorsal raphe, and parabrachial nuclei and in the retrorubral area, ventrol
14 is, amygdala, periaqueductal gray, raphe and parabrachial nuclei) and in regions involved in learning
15 nucleus, locus coeruleus, lateral and medial parabrachial nuclei, and commissural nucleus tractus sol
16 palatability and gustatory responses in the parabrachial nuclei are reduced by systemic morphine.
17 re localized in the Kolliker-Fuse and medial parabrachial nuclei, but some were also found in lateral
19 ubstantia nigra, central gray; raphe nuclei; parabrachial nuclei; locus ceruleus, nucleus of the soli
21 BS, including the locus ceruleus complex and parabrachial nuclei, may interfere with descending corti
22 axic center" in the Kolliker-Fuse and medial parabrachial nuclei of dorsolateral pons (dl-pons) plays
23 tinal fat on gustatory coding in the pontine parabrachial nuclei (PBN) by recording from single neuro
24 ic acid lesions of the gustatory zone of the parabrachial nuclei (PBN) failed to acquire a conditione
25 NST) or ibotenic acid lesions of the pontine parabrachial nuclei (PBN) failed to disrupt retention of
27 itary tract (NST) not only send axons to the parabrachial nuclei (PbN), but also receive descending p
28 enotypes were found in the Kolliker-Fuse and parabrachial nuclei, periaqueductal gray, pedunculoponti
29 ea, the superior and inferior colliculi, the parabrachial nuclei, the locus coeruleus, subcoeruleus a
30 lamus, the central gray, the cerebellum, the parabrachial nuclei, the nucleus of the spinal trigemina
31 te putamen and cerebral cortex, and from the parabrachial nuclei to the central extended amygdala, la
32 al region and also CGRP projections from the parabrachial nuclei to the olfactory-anterior septal reg
33 lly, a subset of VGLUT3 neurons projected to parabrachial nuclei, whose photoactivation sufficiently