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1 rons to a key site for fever production, the raphe pallidus.
2 rons activate BAT through projection via the raphe pallidus.
3 re identified by retrograde tracing from the raphe pallidus.
4 roinjection, and also in the midline rostral raphe pallidus.
5 were reduced in both the raphe obscurus and raphe pallidus.
6 Orexin-ir fibers also innervated raphe pallidus.
7 bicuculline microinjection into the rostral raphe pallidus (+1340 +/- 547% of control), but not diff
8 n the PVN, 50% in the LC, 54% in the rostral raphe pallidus, 58% in the VLM, 39% in the middle part o
9 ars alpha, nucleus raphe magnus, and nucleus raphe pallidus); 6) the ventrolateral medulla (nucleus r
10 n-A (1 nmol) activated Fos expression in the raphe pallidus and C1/A1 catecholaminergic neurons in th
11 ctions to the dorsal vagal complex (DVC) and raphe pallidus and effects on ingestive behavior and aut
12 audal raphe nuclei (serotonin neurons in the raphe pallidus and magnus nuclei), A5 noradrenergic cell
13 esent in the dorsal motor vagal complex, A1, raphe pallidus and obscurus, and marginal layer of ventr
17 eling was seen in the ventrolateral medulla, raphe pallidus, and magnus, the A5 and locus ceruleus no
18 c brain regions, namely the locus coeruleus, raphe pallidus, and paraventricular nucleus of the hypot
19 l, nucleus tractus solitarius, raphe magnus, raphe pallidus, and the rostral and caudal linear raphe
22 sympathetic premotor neurons in the rostral raphe pallidus area (rRPa) are required for IL-1beta-evo
23 gonist clonidine (1.2 nmol) into the rostral raphe pallidus area (rRPa) inhibited BAT sympathetic ner
25 pothalamus or orexinergic fibers innervating raphe pallidus impaired or improved glucose tolerance, r
28 ) project and synaptically couple to rostral raphe pallidus neurons, consistent with the current unde
29 the nucleus raphe obscurus, raphe magnus and raphe pallidus (NRP), is involved in regulation of cardi
30 the neuroaxis with highest densities in the raphe pallidus nucleus, nucleus of the solitary tract, p
31 wing domains: nucleus raphe obscurus-nucleus raphe pallidus, nucleus raphe magnus, and rostral and ca
32 on of a brainstem thermogenic network in the raphe pallidus, or electrical stimulation in this raphe
34 imental and control were observed in nucleus raphe pallidus, rostral paramedian reticular formation,
35 role of neurons in the area of the medullary raphe pallidus (RP) in the tachycardia caused by stimula
36 s that were not serotonergic were located in raphe pallidus (RP), parapyramidal cell group (PP), and
39 urons were serotonergic cells located in the raphe pallidus (RPa) and parapyramidal region (PPyr).
40 expression induced by cold-restraint in the raphe pallidus (Rpa) and paraventricular nucleus of the
41 or antagonist, bicuculline, into the rostral raphe pallidus (RPa) on arterial pressure (AP), heart ra
42 ation of DMH(TrkB) neurons projecting to the raphe pallidus (RPa) stimulates thermogenesis and increa
43 [e.g., rostral ventrolateral medulla (RVLM), raphe pallidus (RPa), and parapyramidal region (PPR)] th
44 asing hormone (TRH) synthesized in medullary raphe pallidus (Rpa), raphe obscurus (Rob) and the parap
46 eus [PaMP]) and autonomic (rostral medullary raphe pallidus [RPa]) responses were targeted with disti
48 muscarinic cholinergic inhibition of rostral raphe pallidus (rRPa) neurons influences thermogenesis o
49 nucleus (PVN), locus coeruleus (LC), rostral raphe pallidus (rRPa), nucleus of the solitary tract (NT
50 ction of orexin-A (12 pmol) into the rostral raphe pallidus (rRPa), the site of BAT sympathetic premo
51 cholinergic input to neurons in the rostral raphe pallidus (rRPa), the site of sympathetic premotor
52 hough the DMH neurons project to the rostral raphe pallidus (rRPa), these projections did not contain
53 neurons in ventral median raphe nucleus and raphe pallidus selectively express orexin receptor type
54 rmation, Barrington's nucleus, raphe magnus, raphe pallidus, subcoeruleus pars alpha, locus coeruleus
55 ed by hemorrhage were located in the nucleus raphe pallidus, the parapyramidal cell group, the raphe