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1 e Kolliker-Fuse, intertrigeminal region, and lateral parabrachial nucleus.
2 certa and subparafascicular nucleus, and the lateral parabrachial nucleus.
3 rincipal sensory trigeminal nucleus, and the lateral parabrachial nucleus.
4 eus and the innermost region of the external lateral parabrachial nucleus.
5 arii, lateral medulla, A5 area, and internal lateral parabrachial nucleus.
6 uctal gray matter, dorsal raphe nucleus, and lateral parabrachial nucleus.
7 tacted by VR1-positive fibers project to the lateral parabrachial nucleus.
8 ral amygdalar nucleus, retrorubral area, and lateral parabrachial nucleus.
9 erior hypothalamus, periaqueductal gray, and lateral parabrachial nucleus.
10 , the nucleus of the solitary tract, and the lateral parabrachial nucleus.
11 mic area, ventrolateral periaqueductal gray, lateral parabrachial nucleus and caudal nucleus of the s
12 ubfornical organ and increased Fos-ir in the lateral parabrachial nucleus and caudal ventrolateral me
13  amygdala, and brainstem regions such as the lateral parabrachial nucleus and nucleus of the solitary
14 ic nucleus (mPVN), 4.1-times in the external lateral parabrachial nucleus, and 2.6-times in both the
15 ved in periaqueductal gray, locus coeruleus, lateral parabrachial nucleus, and commissural nucleus tr
16 l nucleus, dorsomedial hypothalamic nucleus, lateral parabrachial nucleus, and nucleus of the solitar
17 he dorsal- and external-lateral subnuclei of lateral parabrachial nucleus, and present intracellularl
18 ay from somatic afferents to the VRG via the lateral parabrachial nucleus causes resetting of respira
19 ucleus of the solitary tract, area postrema, lateral parabrachial nucleus, central lateral nucleus of
20 ns, whereas many NPS-positive neurons in the lateral parabrachial nucleus coexpress corticotropin-rel
21  hypothalamic nucleus, lateral hypothalamus, lateral parabrachial nucleus, dorsal raphe nucleus, and
22                   Reversible blockade of the lateral parabrachial nucleus eliminated entrainment.
23 V), subfornical organ (SFO) and the external lateral parabrachial nucleus (elPB).
24 ntal nuclei, locus coeruleus, raphe complex, lateral parabrachial nucleus, inferior olivary complex,
25 brachial nuclei, but some were also found in lateral parabrachial nucleus, intertrigeminal nucleus, p
26 l when alpha-hCRH was microinjected into the lateral parabrachial nucleus ipsilateral to the LC recor
27 LM were detected in: paratrigeminal nucleus, lateral parabrachial nucleus, Kolliker-Fuse nucleus, ven
28 ated with neuropil also, particularly in the lateral parabrachial nucleus, locus coeruleus, lateral s
29 thalamus, periaqueductal gray, raphe nuclei, lateral parabrachial nucleus, locus coeruleus, spinal tr
30 he nucleus of the solitary tract (rNTS), the lateral parabrachial nucleus (LPB), and the central amyg
31 ria terminalis (BST), caudate-putamen (CPu), lateral parabrachial nucleus (LPB), nucleus tractus soli
32 found that neurons in the dorsal part of the lateral parabrachial nucleus (LPBd) glutamatergically tr
33  tractus solitarius (NTS) projections to the lateral parabrachial nucleus (lPBN) and calcitonin-gene
34 artate (NMDA) glutamatergic receptors in the lateral parabrachial nucleus (LPBN) are involved in the
35 his study was to investigate the role of the lateral parabrachial nucleus (LPBN) in mediating dorsal
36   Methysergide injected bilaterally into the lateral parabrachial nucleus (LPBN) increases NaCl intak
37 ments were designed to determine whether the lateral parabrachial nucleus (lPBN) mediates acquisition
38                                     Although lateral parabrachial nucleus (lPBN) neurons are implicat
39 his function to be mediated by a PVH(MC4R)-->lateral parabrachial nucleus (LPBN) pathway.
40           We also report that neurons in the lateral parabrachial nucleus (LPBN), a brain area that i
41 ta highlight the dorsal vagal complex (DVC), lateral parabrachial nucleus (lPBN), and central nucleus
42 ), rostral ventrolateral medulla (RVLM), and lateral parabrachial nucleus (lPBN); however, EB signifi
43 ucleus of the amygdala, periaqueductal gray, lateral parabrachial nucleus, nucleus of the solitary tr
44 d that glutamatergic neurons in the external lateral parabrachial nucleus (PBel) play a critical role
45 -LC), and the inner division of the external lateral parabrachial nucleus (PBel).
46                           Interestingly, the lateral parabrachial nucleus (PBL), a critical node in t
47 s of the hypothalamus (PVN), and the pontine lateral parabrachial nucleus (PBL; an important componen
48 wn to mediate feeding behaviour, such as the lateral parabrachial nucleus (PBN).
49 olitary tract (NTS), area postrema (AP), and lateral parabrachial nucleus (PBN).
50 eus, and in brainstem regions, including the lateral parabrachial nucleus, periaqeductal gray, and ve
51 dala, and in brainstem regions including the lateral parabrachial nucleus, peripeduncular area and ve
52                           Destruction of the lateral parabrachial nucleus produced a 44 % inhibition
53 holinergic neurons of the lateral septum and lateral parabrachial nucleus regulate pancreatic secreti
54  of glutamate into the lateral septum or the lateral parabrachial nucleus stimulated vagal pancreatic
55 entricular hypothalamic nuclei, the external lateral parabrachial nucleus, the locus coeruleus, and t
56 entral nervous system regions, including the lateral parabrachial nucleus, the periaqueductal gray, a
57 enuated cold-induced c-Fos expression in the lateral parabrachial nucleus, thus indicating a site of
58          Further, cholinergic input from the lateral parabrachial nucleus to the hypothalamus plays a
59 nger-Westphal nucleus, locus coeruleus (LC), lateral parabrachial nucleus, ventrolateral medulla (VLM
60 ateral septum and external subnucleus of the lateral parabrachial nucleus which contained more CRF-ir

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