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Nucleus raphe pallidus

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Hermann, Dirk M. et al. Afferent projections to the rat nuclei raphe magnus, raphe pallidus and reticularis gigantocellularis pars demonstrated by iontophoretic application of choleratoxin (subunit b). Journal of Chemical Neuroanatomy Volume 13, Issue 1, June 1997, Pages
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The nucleus raphe pallidus has recently been shown to be involved in the activation of a fever as an immunoreaction. It has been implied that the preoptic area is constantly inhibiting the raphe pallidus, especially the rostral portion, with
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When the preoptic area receives immune signals from the body, the inhibition stops and the rostral portion of the nucleus raphe pallidus excites the intermediolateral cell column, which induces a fever.
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Zaretsky, Dmitry V. et al. Microinjection of muscimol into raphe pallidus suppresses tachycardia associated with air stress in conscious rats. Journal of Physiology (2003), 546.1, pp. 243-250
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Nakamura, Kazuhiro et al. The Rostral Raphe Pallidus Nucleus Mediates Pyrogenic Transmission from the Preoptic Area. The Journal of Neuroscience, June 1, 2002, 22(11):4600-4610
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In both of these cases, GABA is mediating two different sympathetic responses, so clearly the nucleus raphe pallidus is a far more a complex nucleus than previously thought.
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Section of the medulla oblongata at about the middle of the olive. (Raphe nuclei not labeled, but 'raphe' labeled at left.)
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Microinjections of a GABA-a antagonist into the nucleus raphe pallidus, induces an increased heart rate.
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response, an extremely high heart rate known to be incited by emotional or psychological stress.
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The nucleus raphe pallidus has also been known to mediate the
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Also, the nucleus raphe pallidus receives afferents from the
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eminence 628: 577: 551: 482: 442: 433:Cuneate nucleus 428:Gracile nucleus 412: 382: 377: 323: 300: 296:Anatomy of the 294: 264: 259: 255: 250: 246: 240: 236: 232: 220: 142: 31: 12: 11: 5: 780: 770: 769: 752: 751: 749: 748: 743: 742: 741: 736: 731: 721: 720: 719: 714: 709: 704: 699: 688: 686: 680: 679: 676: 675: 673: 672: 667: 662: 657: 652: 647: 642: 636: 634: 630: 629: 627: 626: 625: 624: 614: 613: 612: 607: 596: 594: 587: 583: 582: 579: 578: 576: 575: 574: 573: 568: 559: 557: 553: 552: 550: 549: 548: 547: 542: 534: 533: 532: 527: 522: 517: 512: 503: 501: 494: 488: 487: 484: 483: 481: 480: 479: 478: 473: 468: 463: 458: 450: 448: 444: 443: 441: 440: 435: 430: 424: 422: 418: 417: 414: 413: 411: 410: 405: 400: 395: 389: 387: 379: 378: 376: 375: 374: 373: 368: 363: 353: 348: 347: 346: 341: 330: 328: 317: 315:Cranial nuclei 308: 302: 301: 293: 292: 285: 278: 270: 263: 262: 253: 244: 233: 231: 228: 227: 226: 219: 216: 144: 143: 134: 128: 127: 122: 116: 115: 110: 104: 103: 98: 92: 91: 86: 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113:6036 96:TA98 59:MeSH 120:FMA 108:TA2 76:741 763:: 190:. 182:. 168:. 85:ID 289:e 282:t 275:v 140:]

Index


Latin
MeSH
D065848
NeuroNames
741
NeuroLex
birnlex_1375
TA98
A14.1.04.320
TA2
6036
FMA
72586
Anatomical terms of neuroanatomy
edit on Wikidata
periaqueductal gray
Paraventricular nucleus of hypothalamus
amygdala
parvocellular reticular nucleus
medial
preoptic area
paragigantocellular reticular nuclei
GABA
tachycardia
agonist
Raphe nuclei
v
t
e

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