Actas de congresos
Caudal Brainstem Raphe Nuclei: Neural Substrate For Their Involvement In The Expression Of Some Biological Rhythms
Registro en:
Biological Rhythm Research. , v. 27, n. 3, p. 245 - 260, 1996.
9291016
10.1076/brhm.27.3.245.12963
2-s2.0-0029862001
Autor
Nogueira M.I.
Pfeiffer C.P.
Bittencourt J.C.
Ribeiro Do Vale L.E.
Institución
Resumen
Nucleus raphe pallidus (RPa) lies ventrally in the caudal brainstem, where it is coextensive rostrally with the nucleus raphe magnus (RMg) and caudally with the nucleus raphe obscurus (ROb). Retrograde neuronal tracing studies of our laboratory, carried out in rats and presented elsewhere, with fluorogold, true-blue or fast-blue, iontophoretically injected or by crystalline deposit, along the RPa extent, displayed many labeled pericaria at the preoptic area (POA), as well as lateral (LH) and dorsomedial (DMH) hypothalamus; paraventricular nucleus (PVN) and dorsal (DR) and median (MnR) raphe nuclei among others structures. In addition, RPa which projects to the intermediolateral column, has been demonstrated to bear relation to many of the somatic-visceral functions also reported for POA. Iontophoretic injections of PHA-L, an anterograde tracer, in the POA subnuclei, presented terminal and varicose labeled fibers in RPa, as well as in the RMg, ROb, paraventricular thalamic (PVA), PVN and supraoptic nucleus (SO), LH, subparaventricular zone (sPVZ) and locus cocruleus (LC), POA, PVA, PVN, LH and SO have been described as retino- and suprachiasmatic-recipients. Taken together, these neuronal connections between brainstem raphe nuclei and POA, the similarity of functions to which they are related, as well as connections with other retino-suprachiasmatic-recipient structures, suggest that these caudal brainstem raphe nuclei could be part of the output system for the expression of some biological rhythms. 27 3 245 260 Akaishi, T., Sakuma, Y., Estrogen-induced modulation of hypothalamic osmoregulation in female rats (1990) American J.Physiol, 258, pp. R924-R929 Allison, J.D., Wilczynski, W., Efferents from the suprachiasmatic nucleus to basal forebrain nuclei in the Green Treefrog (Hyla cinerea) (1994) Brain Behav. Evol., 43, pp. 129-139 Alstermark, A.H., Chai, S.Y., Clevers, J., Mckinley, M.J., Paxinos, G., Mendelsohn, F.A., Localization and characterization of angiotensin II receptor and angiotensin converting enzyme in the human medulla oblongata (1988) J. Comp. Neurol, 269, pp. 249-264 Azmitia, E.C., Segal, M., An autoradiographic analysis of the differential ascending projections of the dorsal and median raphe nuclei in the rat (1978) J. Comp. Neurol., 179, pp. 641-668 Berck, M.L., Finkelstein, J., An autoradiographic determination of the efferent projections of the suprachiasmatic nucleus of the hypothalamus (1981) Brain Res., 226, pp. 1-13 Bloom, F.E., Hoffer, B.J., Siggins, G.R., Baker, J.L., Nicoll, R.A., Effects of serotonin on central neurons: Microintophoretic administration (1972) Fed. Proc., 31, pp. 97-106 Bowker, R.M., Abott, L.C., Quantitative re-evaluation of descending serotonergic and non-serotonergic projections from the medulla of the rodent: Evidence for extensive co-existence of serotonin and peptides in the same spinally projecting neurons but not from the nucleus raphe magnus (1990) Brain Res., 512, pp. 15-25 Briese, E., Do medial preoptic lesions interfere with the set-point of temperature regulation? (1989) Brain Res. Bull., 23, pp. 137-144 Brodal, A., (1981) Neurological Anatomy, pp. 400-450. , Oxford Univers. Press: London Brodal, A., Walberg, F., Taber, E., The raphe nuclei of the brain stem in the cat. III. Afferent connections (1960) J. Comp. Neurol., 114, pp. 261-279 Chandler, M.J., Oh, U., Hobbs, S.F., Foreman, R.D., Responses of feline raphespinal neurons to urinary bladder distension (1994) Autonomic Nervous System, 47, pp. 213-224 Connelly, C.A., Ellenberger, H.H., Feldman, J.L., Are there serotonergic projections from raphe and retrotrapezoid nuclei to the ventral respiratory group in the rat? (1989) Neurose. Lett., 105, pp. 34-40 Cunningham, J.T., Beltz, T., Johnson, R.F., Johnson, A.K., The effects of ibotenate lesions of the median preoptic nucleus on experimentally-induced and circadian drinking behavior in rats (1992) Brain Res., 580, pp. 325-330 Dahlstrom, A., Fuxe, K., Evidence for the existence of monoamine-containing neurons in the central nervous system. I. Demonstration of monoamines in the cell bodies of brainstem neurons (1964) Acta Physiol. Scand., 62, pp. 5-55 Dean, C., Marson, L., Kampine, J.P., Distribution and co-localization of 5-hydroxytryptamine, thyrotropin-releasing hormone and substance P in the cat medulla (1993) Neurose., 57, pp. 811-822 Edwards, G.L., Cunningham, J.T., Beltz, T.G., Johnson, A.K., Neuropeptide Y immunoreactive cells in the caudal medulla project to the median preoptic nucleus (1989) Neurose., 105, pp. 19-26 Ekström, P., Retinofugal projections in the eel. Anguilla anguilla L. (Teleostei), visualized by the cobalt-filling technique (1982) Cell Tissue, 225, pp. 507-524 Erskine, M.S., Mating-induced increases in fos protein in preoptic area and medial amygdala of cycling female rats (1993) Brain Res. Bull., 32, pp. 447-451 Foote, W.E., Taber-Pierce, E., Edwards, L., Evidence for a retinal projection to the midbrain raphe of the cat (1978) Brain Res., 156, pp. 135-140 Garrick, T., Prince, M., Yang, H., Ohning, G., Tache, Y., Raphe pallidus stimulation increases gastric contractility via TRH projections to the dorsal vagal complex in rats (1994) Brain Res., 636, pp. 343-347 Gerfen, C.R., Sawchenko, P.E., An anterograde neuroanatomic tracing method that shows the detailed morphology of neurons, their axons and terminals: Immunohistochemical localization of an axonally transported plant lecitin, Phaseolus vulgaris leucoaglutinin (PHAL) (1984) Brain Res., 290, pp. 219-238 Gonçalves, P.C., Alves, M.B., Silveira, J.E., Saad, W.A., Camargo, L.A., Renzi, A., De Luca Jr., L., Menani, J.V., Effect of AV3V lesion on the cardiovasculalr, fluid, and electrolytic changes induced by activation of the lateral preoptic area (1992) Physiol. Behav., 52, pp. 173-177 Heym, J., Steinfels, G.F., Jacobs, B.L., Activity of serotonin-containing neurons in the nucleus raphe pallidus of freely moving cats (1982) Brain Res., 251, pp. 259-276 Hokfelt, T., Terenius, L., Kuypers, H.G.J.M., Dann, O., Evidence for enkephalin immunoreactive neurons in the medulla oblongata projecting to spinal cord (1979) Neurose. Lett., 14, pp. 55-60 Holstege, G., Some anatomical observations on the projections from hypothalamus to brainstem and spinal cord: An HRP and ultraradiographic tracing study in the cat (1987) J. Comp. Neurol., 260, pp. 98-126 Holstege, G., Kuypers, H.G.J.M., The anatomy of brain stem pathways to the spinal cord in cat. A labeled amino acid tracing study (1982) Anatomy of Descending Pathways to the Spinal Cord, pp. 145-175. , Anonymous, Amsterdam: H.G.J.M. Kuypers Martins Program Brain Res Holtman, J.R., Dick, T.E., Berger, A.J., Serotonin mediated excitation of recurrent laryngeal and phrenic motoneurons evoked by stimulation of the raphe obscurus (1987) Brain Res., 417, pp. 12-20 Hsu, S.M., Raine, L., Fanger, H., The use of avidin-biotin-peroxidase complex (ABC) in immunoperoxidase techniques: A comparison between ABC and unlabeled antibody (PAP) procedures (1981) J. Histochem. Cytochem., 29, pp. 577-580 Hsu, S.M., Raine, L., Protein A, avidin and biotin in immunohistochemistry (1981) J. Histochem. Cytochem., 29, pp. 1349-1353 Johansson, O., Hökfelt, T., Pernow, B., Jeffcoat, S.L., White, N., Steinbush, H.W.M., Verhofstad, A.A.J., Spindel, E., Immunohistochemical support for three putative neurotransmitters in one neuron coexistence of 5-hydroxitryptamine, substance P and thyrotropin releasing hormone-like immunoreactivity in medullary neurons projecting from the spinal cord (1981) Neurose., 6, pp. 1857-1881 Jones, B.E., Pare, M., Beaudet, A., Retrograde labeling of neurons in the brain stem following injections of (3H) choline into the rat spinal cord (1986) Neurose., 18, pp. 901-906 Kalsbeek, A., Teclemariam-Mesbah, R., Pévet, P., Efferent projection of the suprachiasmatic nucleus in the golden hamster (Mesocricetus auratus) (1993) J. Comp. Neurol., 314, pp. 293-314 Kauz, M., Arrangement of neurons in the medullary reticular formation and raphe nuclei projecting to thoracic, lumbar and sacral segments of the spinal cord in the cat (1991) Anatomy and Embryology, 183, pp. 151-163 Kent, D.L., Sladek, J.Z., Histochemical, pharmacological and microspectrofluorimetric analysis of new sites of serotonin localization in the rat hypothalamus (1978) J. Comp. Neurol., 180, pp. 221-236 Kumar, V.M., Sharma, R., Wadhwa, S., Manchanda, S.K., Sleep-inducing function of noradrenergic fibers in the medial preoptic area (1993) Brain Res. Bull., 32, pp. 153-158 Lazar, G., Application of cobalt-filling technique to show retinal projections in the frog (1978) J. Neurose., 3, pp. 725-736 Levine, J.D., Weiss, M.L., Rosenwasser, A.M., Miselis, R.R., Retinohypothalamic tract in the female albino rat: A study using horseradish peroxidase conjugated to cholera toxin (1991) J. Comp. Neurol., 306, pp. 344-360 Loewy, A.D., Mckellar, S., Serotonergic projections from the ventral medulla to the IML cell column in the rat (1981) Brain Res., 211, pp. 146-152 Maclusky, N.I., Naftolin, F., Leranth, C., Immunohistochemical evidence for direct synaptic connections between corticotropin releasing factor (CRF) and gonadotropin releasing hormone (GnRH) containing neurons in the preoptic area of the rat (1988) Brain Res., 439, pp. 391-395 Martin, G.F., Holstege, G., Mehler, W.R., (1990) Reticular Formation of Pons and Medulla in the Human Nervous System, pp. 203-220. , George Paxinos (ed), Academic Press Meijer, J.H., Rietveld, W.J., Neurophysiology of the suprachiasmatic circadian pacemaker in rodents (1989) Physiological Reviews, 69, pp. 671-707 Miller, A.D., Ruggiero, D.A., Emetic reflex arc (1994) Neurose., 14, pp. 871-888 Modianos, D., Pfaff, D.W., Medullary reticular formation lesions and lordosis reflex in female rats (1979) Brain Res., 379, pp. 39-55 Moore, R.Y., Retinohypothalamic projections in mammals: A comparative study (1973) Brain Res., 49, pp. 403-409 Morin, L.P., Goodless-Sanchez, N., Smale, L., Moore, R.Y., Projections of the suprachiasmatic nuclei, subparaventricular zone and retrochiasmatic area in the golden hamster (1994) Neurose., 61, pp. 391-410 Morrison, S.F., Raphe Pallidus excites a unique class of sympathetic preganglionic neurons (1993) Am. J. Physiol., 34, pp. R82-R89 Murakami, D.M., Miller, J.D., Fuller, C.A., The retinohypothalamic tract in the cat: Retinal ganglion cell morphology and pattern of projection (1989) Brain Res., 482, pp. 283-296 Nogueira, M.I., Ribeiro Do Valle, L.E., Bittencourt, J.C., Afferent connections of nucleus Raphe Pallidus. A study with fluorescent tracers in rats (1992) Neuroscience Abs, pp. 475.4 Nogueira, M.I., Croti, A.V., Ribeiro Do Valle, L.E., Bittencourt, J.C., Projections to raphe pallidus, study with retrograde tracers injected along its antero-posterior axis (1994) Fed. Soc. Biol. Exp., pp. 1.58 Northcutt, R.G., Butler, A.B., Retinofugal and retinopetal projections in the green sunfish Lepomis cyanellus (1991) J. Comp. Neurol, 37, pp. 333-354 Oldfield, B.J., Hrds, D.K., McKinley, M.J., Projections from the subfornical organ to supraoptic nucleus in the rat: Ultrastructure identification of an interposed synapse in the median preoptic nucleus using a combination of neuronal tracers (1991) Brain Res., 558, pp. 13-19 Olszewiski, J., Baxter, D., (1954) Cytoarchiteture of the Human Brainstem, , Karger, N.Y Ooka-Souda, S., The probable location of the circadian pacemaker of the hagfish Eptatretus burgeri (1993) Neurose .Letters, 164, pp. 33-36 Paxinos, G., Watson, C., (1986) The Rat Brain in Stereotaxic Coordinates, , Academic Press, Inc Pickard, G.E., The afferent connections of the suprachiasmatic nucleus of the golden hamster with emphasis on the retinohypothalamic projection (1982) J. Comp. Neurol., 211, pp. 65-83 Sadun, A.A., Schaechter, J.D., Smith, E.H., A retinohypothalamic pathway in man: Light mediation of circadian rhythms (1984) Brain Res., 302, pp. 371-377 Sakai, K., (1985) Anatomical and Physiological Basis of Paradoxical Sleep: Brain Mechanisms of Sleep, pp. 111-137. , D.J. McGinty, R. Druker-Colin. A. Morrison and P.L. Parmeggiani eds Sawchenko, P.E., Swanson, L.W., A method for tracing biochemically defined pathways in the central nervous system using combined fluorescence retrograde transport and immunohistochemical techniques (1981) Brain Res., 210, pp. 31-51 Scammel, T.E., Price, K.J., Sagar, S.U., Hyperthermia induces c-fos expression in the preoptic area (1993) Brain Res., 618, pp. 303-307 Schaechter, J.D., Sadun, A.A., A second hypothalamic nucleus receiving retinal input in man, the paraventricular nucleus (1985) Brain Res., 340, pp. 243-250 Shen, H., Semba, K.A., A direct retinal projection to the dorsal raphe nucleus in the rat (1993) Brain Res., 635, pp. 159-168 Shimura, T., Yamamoto, T., Shimokochi, M., The medial preoptic area is involved in both sexual arousal and performance in male rats: Re-evaluation of neuron activity in freely moving animals (1994) Brain Res., 640, pp. 215-222 Shreve, P.E., Uristsky, N.J., GABA and Glutamate interact in the substantia innominata, lateral preoptic area to modulate locomotor activity (1991) Pharmac. Biochem ., 38, pp. 385-388 Simerly, R.B., Swanson, L.W., Projections of the medial preoptic nucleus: A Phaseolus vulgaris leucoaglutinin anterograde tracing study in the rat (1988) J. Comp. Neurol., 270, pp. 209-242 Stephan, F.K., Berkeley, K.J., Moss, R.L., Efferent connections of the rat suprachiasmatic nucleus (1981) Neuroscience, 6, pp. 2625-2641 Swanson, L.W., Cowan, W.M., The efferent connections of the suprachiasmatic nucleus of the hypothalamus (1975) J. Comp. Neurol., 160, pp. 13-36 Taber, E., Brodal, A., Walberg, F., The raphe nuclei of the brain stem in the cat. I. Normal topography and cytoarchiteture and general discussion (1960) J. Comp. Neurol, 114, pp. 161-187 Tork, I., (1985) Raphe Nuclei and Serotonin Containing Systems : The Rat Nervous System, pp. 43-78. , Sydney, Australia: G. Paxinos Tork, I., Hornung, J., Raphe nuclei and the serotonergic system (1990) The Human Nervous System, pp. 1001-1102. , Anonymous, Academic Press Vertes, R.P., Brainstem afferents to the basal forebrain in the rat (1988) Neurose., 24, pp. 907-935 Watts, A.G., Swanson, L.W., Efferent projections of the suprachiasmatic nucleus: II. Studies using retrograde transport of fluorescent dyes and simultaneous peptide immunohistochemistry in the rat (1987) J. Comp. Neurol., 258, pp. 230-252 Webster, H.H., Friedman, L., Jones, B.E., Modification of paradoxical sleep following transections of the reticular formation at the pontomedullary junction (1986) Sleep, 9, pp. 1-23 Yang, H., Ishikawa, T., Tache, I., Microinjection of TRH analog into the raphe pallidus stimulates gastric acid secretion in the rat (1990) Brain Res., 531, pp. 280-285 Youngstrom, T.G., Weiss, M.L., Nunez, A.A., Retinofugal projections to the hypothalamus, anterior thalamus and basal forebrain in hamsters (1991) Brain Res., 26, pp. 403-411 Zagon, Arrangement of neurons in the medullary reticular formation and raphe nuclei projecting to thoracic, lumbar and sacral segments of the spinal cord in the cat (1991) Anatomy and Embryology, 183, pp. 151-163. , KAUZ, M