Artigo Acesso aberto Revisado por pares

Cardiac responses during stimulation of the dorsal motor nucleus and nucleus ambiguus in the cat.

1980; Lippincott Williams & Wilkins; Volume: 46; Issue: 5 Linguagem: Inglês

10.1161/01.res.46.5.606

ISSN

1524-4571

Autores

Gilbert Geis, Robert D. Wurster,

Tópico(s)

Birth, Development, and Health

Resumo

HomeCirculation ResearchVol. 46, No. 5Cardiac responses during stimulation of the dorsal motor nucleus and nucleus ambiguus in the cat. Free AccessAbstractPDF/EPUBAboutView PDFSections ToolsAdd to favoritesDownload citationsTrack citationsPermissions ShareShare onFacebookTwitterLinked InMendeleyReddit Jump toFree AccessAbstractPDF/EPUBCardiac responses during stimulation of the dorsal motor nucleus and nucleus ambiguus in the cat. G S Geis and R D Wurster G S GeisG S Geis and R D WursterR D Wurster Originally published1 May 1980https://doi.org/10.1161/01.RES.46.5.606Circulation Research. 1980;46:606–611 Previous Back to top Next FiguresReferencesRelatedDetailsCited By Alzate‐Correa D, Mei‐ling Liu J, Jones M, Silva T, Alves M, Burke E, Zuñiga J, Kaya B, Zaza G, Aslan M, Blackburn J, Shimada M, Fernandes‐Junior S, Baer L, Stanford K, Kempton A, Smith S, Szujewski C, Silbaugh A, Viemari J, Takakura A, Garcia A, Moreira T, Czeisler C and Otero J (2020) Neonatal apneic phenotype in a murine congenital central hypoventilation syndrome model is induced through non‐cell autonomous developmental mechanisms, Brain Pathology, 10.1111/bpa.12877, 31:1, (84-102), Online publication date: 1-Jan-2021. Ruffinazzi M and Dusi V (2021) Central Nervous System Management of Autonomic Cardiovascular Control Brain and Heart Dynamics, 10.1007/978-3-319-90305-7_65-1, (1-27), . Dusi V and Ardell J (2020) Brain-Heart Afferent-Efferent Traffic Brain and Heart Dynamics, 10.1007/978-3-030-28008-6_2, (3-24), . Musgrove R, Chiu W and Goldberg J (2020) Vagal motoneurons in Parkinson's disease Genetics, Neurology, Behavior, and Diet in Parkinson's Disease, 10.1016/B978-0-12-815950-7.00021-7, (327-343), . Dusi V and Ardell J (2020) Brain-Heart Afferent-Efferent Traffic Brain and Heart Dynamics, 10.1007/978-3-319-90305-7_2-1, (1-23), . Kressel A, Tsaava T, Levine Y, Chang E, Addorisio M, Chang Q, Burbach B, Carnevale D, Lembo G, Zador A, Andersson U, Pavlov V, Chavan S and Tracey K (2020) Identification of a brainstem locus that inhibits tumor necrosis factor, Proceedings of the National Academy of Sciences, 10.1073/pnas.2008213117, 117:47, (29803-29810), Online publication date: 24-Nov-2020. Gourine A and Ackland G (2019) Cardiac Vagus and Exercise, Physiology, 10.1152/physiol.00041.2018, 34:1, (71-80), Online publication date: 1-Jan-2019. Carricarte Naranjo C, Marras C, Visanji N, Cornforth D, Sanchez-Rodriguez L, Schüle B, Goldman S, Estévez M, Stein P, Lang A, Jelinek H and Machado A (2019) Increased markers of cardiac vagal activity in leucine-rich repeat kinase 2-associated Parkinson’s disease, Clinical Autonomic Research, 10.1007/s10286-019-00632-w, 29:6, (603-614), Online publication date: 1-Dec-2019. Salavatian S, Beaumont E, Longpré J, Armour J, Vinet A, Jacquemet V, Shivkumar K and Ardell J (2016) Vagal stimulation targets select populations of intrinsic cardiac neurons to control neurally induced atrial fibrillation, American Journal of Physiology-Heart and Circulatory Physiology, 10.1152/ajpheart.00443.2016, 311:5, (H1311-H1320), Online publication date: 1-Nov-2016. Farmer D, Dutschmann M, Paton J, Pickering A and McAllen R (2016) Brainstem sources of cardiac vagal tone and respiratory sinus arrhythmia, The Journal of Physiology, 10.1113/JP273164, 594:24, (7249-7265), Online publication date: 15-Dec-2016. Gourine A, Machhada A, Trapp S and Spyer K (2016) Cardiac vagal preganglionic neurones: An update, Autonomic Neuroscience, 10.1016/j.autneu.2016.06.003, 199, (24-28), Online publication date: 1-Aug-2016. Hildreth C and Goodchild A (2010) Role of ionotropic GABA, glutamate and glycine receptors in the tonic and reflex control of cardiac vagal outflow in the rat, BMC Neuroscience, 10.1186/1471-2202-11-128, 11:1, Online publication date: 1-Dec-2010. Cheng G, Zhu H, Zhou X, Qu J, Ashwell K and Paxinos G (2008) Development of the human dorsal nucleus of the vagus, Early Human Development, 10.1016/j.earlhumdev.2007.01.012, 84:1, (15-27), Online publication date: 1-Jan-2008. Kong S, Liu J, Ramage A and Wang Y (2007) Cardiac vagal preganglionic neurones in the intermediate zone of the brainstem in anaesthetized cats, Experimental Physiology, 10.1113/expphysiol.2007.039230, 92:6, (1023-1028), Online publication date: 1-Nov-2007. Salo L, Campos R and McAllen R (2006) DIFFERENTIAL CONTROL OF CARDIAC FUNCTIONS BY THE BRAIN, Clinical and Experimental Pharmacology and Physiology, 10.1111/j.1440-1681.2006.04520.x, 33:12, (1255-1258), Online publication date: 1-Dec-2006. Cheng Z, Zhang H, Yu J, Wurster R and Gozal D (2004) Attenuation of baroreflex sensitivity after domoic acid lesion of the nucleus ambiguus of rats, Journal of Applied Physiology, 10.1152/japplphysiol.00391.2003, 96:3, (1137-1145), Online publication date: 1-Mar-2004. Cheng Z, Zhang H, Guo S, Wurster R and Gozal D (2004) Differential control over postganglionic neurons in rat cardiac ganglia by NA and DmnX neurons: anatomical evidence, American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, 10.1152/ajpregu.00143.2003, 286:4, (R625-R633), Online publication date: 1-Apr-2004. Gray A, Johnson T, Lauenstein J, Newton S, Ardell J and Massari V (2004) Parasympathetic control of the heart. III. Neuropeptide Y-immunoreactive nerve terminals synapse on three populations of negative chronotropic vagal preganglionic neurons, Journal of Applied Physiology, 10.1152/japplphysiol.00621.2003, 96:6, (2279-2287), Online publication date: 1-Jun-2004. Jang I, Cho K, Moon S, Ko C, Lee B, Ko B and Lee C (2012) A Study on the Central Neural Pathway of the Heart, Nei-Kuan (EH-6) and Shen-Men (He-7) with Neural Tracer in Rats, The American Journal of Chinese Medicine, 10.1142/S0192415X03001314, 31:04, (591-609), Online publication date: 1-Jan-2003. Spyer K (2002) Vagal Preganglionic Neurons Innervating the Heart Comprehensive Physiology, 10.1002/cphy.cp020105, (213-239), Online publication date: 1-Dec-2002. Cheng Z and Powley T (2000) Nucleus ambiguus projections to cardiac ganglia of rat atria: An anterograde tracing study, The Journal of Comparative Neurology, 10.1002/1096-9861(20000904)424:4 3.0.CO;2-7, 424:4, (588-606), Online publication date: 4-Sep-2000. Cheng Z, Powley T, Schwaber J and Doyle F (1999) Projections of the dorsal motor nucleus of the vagus to cardiac ganglia of rat atria: An anterograde tracing study, The Journal of Comparative Neurology, 10.1002/(SICI)1096-9861(19990726)410:2 3.0.CO;2-5, 410:2, (320-341), Online publication date: 26-Jul-1999. Massari V, Dickerson L, Gray A, Lauenstein J, Blinder K, Newsome J, Rodak D, Fleming T, Gatti P and Gillis R (1998) Neural control of left ventricular contractility in the dog heart: synaptic interactions of negative inotropic vagal preganglionic neurons in the nucleus ambiguus with tyrosine hydroxylase immunoreactive terminals, Brain Research, 10.1016/S0006-8993(98)00613-1, 802:1-2, (205-220), Online publication date: 1-Sep-1998. Hsieh J, Chen R, Wu J, Yen C and Chai C (1998) Vagal innervation of the gastrointestinal tract arises from dorsal motor nucleus while that of the heart largely from nucleus ambiguus in the cat, Journal of the Autonomic Nervous System, 10.1016/S0165-1838(98)00027-7, 70:1-2, (38-50), Online publication date: 1-May-1998. Jones J, Wang Y and Jordan D (2004) Activity of C fibre cardiac vagal efferents in anaesthetized cats and rats, The Journal of Physiology, 10.1111/j.1469-7793.1998.869bs.x, 507:3, (869-880), Online publication date: 1-Mar-1998. Tian P and Ingram C (1997) Evidence for independent hypertensive effects of oxytocin and vasopressin in the rat dorsal vagal complex, Neuroscience Research, 10.1016/S0168-0102(97)01161-9, 27:3, (285-288), Online publication date: 1-Mar-1997. Kaufman M and Forster H (1996) Reflexes Controlling Circulatory, Ventilatory and Airway Responses to Exercise Comprehensive Physiology, 10.1002/cphy.cp120110, (381-447), Online publication date: 1-Dec-1996. Massari V, Johnson T and Gatti P (1995) Cardiotopic organization of the nucleus ambiguus? An anatomical and physiological analysis of neurons regulating atrioventricular conduction, Brain Research, 10.1016/0006-8993(95)00227-H, 679:2, (227-240), Online publication date: 1-May-1995. Standish A, Enquist L and Schwaber J (1994) Innervation of the Heart and Its Central Medullary Origin Defined by Viral Tracing, Science, 10.1126/science.8284675, 263:5144, (232-234), Online publication date: 14-Jan-1994. Cochrane K and Nathan M (1994) Pressor systems involved in the maintenance of arterial pressure after lesions of the rostral ventrolateral medulla, Journal of the Autonomic Nervous System, 10.1016/0165-1838(94)90139-2, 46:1-2, (9-18), Online publication date: 1-Jan-1994. Cochrane K and Nathan M (1993) Cardiovascular effects of lesions of the rostral ventrolateral medulla and the nucleus reticularis parvocellularis in rats, Journal of the Autonomic Nervous System, 10.1016/0165-1838(93)90323-M, 43:1, (69-81), Online publication date: 1-Apr-1993. Agarwal S and Calaresu F (1992) Electrical stimulation of nucleus tractus solitarius excites vagal preganglionic cardiomotor neurons of the nucleus ambiguus in rats, Brain Research, 10.1016/0006-8993(92)90833-U, 574:1-2, (320-324), Online publication date: 1-Mar-1992. Leong S and Ling E (2009) Vagus Nerve and Spinal Cord Projecting Neurons Demonstrated By Horseradish Peroxidase and Different Fluorescent Dyes, International Journal of Neuroscience, 10.3109/00207459109150347, 57:1-2, (61-72), Online publication date: 1-Jan-1991. Agarwal S and Calaresu F (1991) Enkephalins, substance P and acetylcholine microinjected into the nucleus ambiguus elicit vagal bradycardia in rats, Brain Research, 10.1016/0006-8993(91)91534-8, 563:1-2, (203-208), Online publication date: 1-Nov-1991. Brown J (1990) Prenatal development of the human nucleus ambiguus during the embryonic and early fetal periods, American Journal of Anatomy, 10.1002/aja.1001890310, 189:3, (267-283), Online publication date: 1-Nov-1990. Pagani F, Norman W and Gillis R (1988) Medullary parasympathetic projections innervate specific sites in the feline stomach, Gastroenterology, 10.1016/0016-5085(88)90481-7, 95:2, (277-288), Online publication date: 1-Aug-1988. Pagani F, DiMicco J, Hamilton B, Souza J, Schmidt B and Gillis R (1987) Stress-induced changes in the function of the parasympathetic nervous system are mimicked by blocking GABA in the cns of the cat, Neuropharmacology, 10.1016/0028-3908(87)90203-6, 26:2-3, (155-160), Online publication date: 1-Feb-1987. Pardini B, Patel K, Schmid P and Lund D (1987) Location, distribution and projections of intracardiac ganglion cells in the rat, Journal of the Autonomic Nervous System, 10.1016/0165-1838(87)90106-8, 20:2, (91-101), Online publication date: 1-Aug-1987. Randall W, Ardell J, Calderwood D, Milosavljevic M and Goyal S (1986) Parasympathetic ganglia innervating the canine atrioventricular nodal region, Journal of the Autonomic Nervous System, 10.1016/0165-1838(86)90036-6, 16:4, (311-323), Online publication date: 1-Aug-1986. Gatti P, Dias Souza J, Taveira Da Silva A, Quest J and Gillis R (1985) Chemical stimulation of the area postrema induces cardiorespiratory changes in the cat, Brain Research, 10.1016/0006-8993(85)91100-X, 346:1, (115-123), Online publication date: 1-Oct-1985. Stuesse S and Fish S (1984) Projections to the cardioinhibitory region of the nucleus ambiguus of rat, The Journal of Comparative Neurology, 10.1002/cne.902290211, 229:2, (271-278), Online publication date: 20-Oct-1984. Ellenberger H, Haselton J, Liskowsky D and Schneiderman N (1983) The location of chronotropic cardioinhibitory vagal motoneurons in the medulla of the rabbit, Journal of the Autonomic Nervous System, 10.1016/0165-1838(83)90010-3, 9:2-3, (513-529), Online publication date: 1-Nov-1983. Day T, Ro A and Renaud L (1983) Depressor area within caudal ventrolateral medulla of the rat does not correspond to the A1 catecholamine cell group, Brain Research, 10.1016/0006-8993(83)90197-X, 279:1-2, (299-302), Online publication date: 1-Nov-1983. Kozelka J, Christy G and Wurster R (1982) Somato-autonomic reflexes in anesthetized and unanesthetized dogs, Journal of the Autonomic Nervous System, 10.1016/0165-1838(82)90090-X, 5:1, (63-70), Online publication date: 1-Jan-1982. Stuesse S (1982) Origins of cardiac vagal preganglionic fibers: A retrograde transport study, Brain Research, 10.1016/0006-8993(82)90030-0, 236:1, (15-25), Online publication date: 1-Mar-1982. Matsuguchi H, Sharabi F, Gordon F, Johnson A and Schmid P (1982) Blood pressure and heart rate responses to microinjection of vasopressin into the nucleus tractus solitarius region of the rat, Neuropharmacology, 10.1016/0028-3908(82)90012-0, 21:7, (687-693), Online publication date: 1-Jul-1982. Loewy A (1981) Descending pathways to sympathetic and parasympathetic preganglionic neurons, Journal of the Autonomic Nervous System, 10.1016/0165-1838(81)90068-0, 3:2-4, (265-275), Online publication date: 1-Apr-1981. Korner P and Angus J (1981) Central nervous control of blood pressure in relation to antihypertensive drug treament, Pharmacology & Therapeutics, 10.1016/0163-7258(81)90005-X, 13:2, (321-356), Online publication date: 1-Jan-1981. Geis G and Wurster R (1981) Localization of ascending inotropic and chronotropic pathways in the cat., Circulation Research, 10.1161/01.RES.49.3.711, 49:3, (711-717), Online publication date: 1-Sep-1981. Schlaefke M (1981) Central chemosensitivity: A respiratory drive Reviews of Physiology, Biochemistry and Pharmacology, Volume 86, 10.1007/BFb0034080, (171-244), . Ardell J and Armour J (2016) Neurocardiology: Structure‐Based Function Comprehensive Physiology, 10.1002/cphy.c150046, (1635-1653) Cakmak Y (2019) Concerning Auricular Vagal Nerve Stimulation: Occult Neural Networks, Frontiers in Human Neuroscience, 10.3389/fnhum.2019.00421, 13 Espinoza L, Fedorchak S and Boychuk C (2021) Interplay Between Systemic Metabolic Cues and Autonomic Output: Connecting Cardiometabolic Function and Parasympathetic Circuits, Frontiers in Physiology, 10.3389/fphys.2021.624595, 12 May 1, 1980Vol 46, Issue 5 Advertisement Article InformationMetrics Copyright © 1980 by American Heart Associationhttps://doi.org/10.1161/01.RES.46.5.606 Originally publishedMay 1, 1980 PDF download Advertisement

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