The Walter B. Cannon Memorial Award Lecture, 2009. Physiology in perspective: The wisdom of the body. In search of autonomic balance: the good, the bad, and the ugly.
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[1] F. Abboud,et al. Mechanical stimulation increases intracellular calcium concentration in nodose sensory neurons , 1995, Neuroscience.
[2] F. Abboud,et al. Interaction of baroreceptor and chemoreceptor reflexes. Modulation of the chemoreceptor reflex by changes in baroreceptor activity. , 1974, The Journal of clinical investigation.
[3] G. Jennings,et al. Sympathetic Nerve Biology In Essential Hypertension , 2001, Clinical and experimental pharmacology & physiology.
[4] A. Burden,et al. Is Impaired Baroreflex Sensitivity a Predictor or Cause of Sudden Death in Insulin‐dependent Diabetes Mellitus? , 1997, Diabetic medicine : a journal of the British Diabetic Association.
[5] F. Abboud,et al. The Ion Channel ASIC2 Is Required for Baroreceptor and Autonomic Control of the Circulation , 2009, Neuron.
[6] F. Abboud. The Sympathetic System in Hypertension: State‐of‐the‐Art Review , 1982, Hypertension.
[7] F. Abboud,et al. Parasympathetic hyperresponsiveness and bradyarrhythmias during apnoea in hypertension , 1992, Clinical Autonomic Research.
[8] A. Kroon,et al. Effects of Chronic Baroreceptor Stimulation on the Autonomic Cardiovascular Regulation in Patients With Drug-Resistant Arterial Hypertension , 2009, Hypertension.
[9] F Sachs,et al. Stretch‐activated single ion channel currents in tissue‐cultured embryonic chick skeletal muscle. , 1984, The Journal of physiology.
[10] N. Prabhakar,et al. Peripheral chemoreceptors in health and disease. , 2004, Journal of applied physiology.
[11] T. Brennan,et al. The mammalian sodium channel BNC1 is required for normal touch sensation , 2000, Nature.
[12] M. Zimmerman,et al. Role of CuZn superoxide dismutase on carotid body function in heart failure rabbits. , 2008, Cardiovascular research.
[13] F. Abboud,et al. Chemoreceptor Hypersensitivity, Sympathetic Excitation, and Overexpression of ASIC and TASK Channels Before the Onset of Hypertension in SHR , 2010, Circulation research.
[14] M. Frischer,et al. Sex surveys and drug users , 1993, Nature.
[15] M. Welsh,et al. Cloning and Expression of a Novel Human Brain Na Channel (*) , 1996, The Journal of Biological Chemistry.
[16] F. Abboud,et al. The Baroreceptor Reflex: Novel Methods and Mechanisms , 2004 .
[17] F. Abboud,et al. Mechanisms Determining Sensitivity of Baroreceptor Afferents in Health and Disease , 2001, Annals of the New York Academy of Sciences.
[18] Lie Gao,et al. Sympathoexcitation by central ANG II: roles for AT1 receptor upregulation and NAD(P)H oxidase in RVLM. , 2005, American journal of physiology. Heart and circulatory physiology.
[19] T. Dick,et al. Systemic, cellular and molecular analysis of chemoreflex‐mediated sympathoexcitation by chronic intermittent hypoxia , 2007, Experimental physiology.
[20] P. Guyenet. The sympathetic control of blood pressure , 2006, Nature Reviews Neuroscience.
[21] Abboud Fm. Ventricular syncope: is the heart a sensory organ? , 1989 .
[22] K. Patel,et al. The origin of sympathetic outflow in heart failure: the roles of angiotensin II and nitric oxide. , 2004, Progress in biophysics and molecular biology.
[23] S. Landgren,et al. On the excitation mechanism of the carotid baroceptors. , 1952, Acta physiologica Scandinavica.
[24] F. Abboud,et al. Interaction of baroreceptor and chemoreceptor reflex control of sympathetic nerve activity in normal humans. , 1991, The Journal of clinical investigation.
[25] D. Ferguson,et al. Clinical and hemodynamic correlates of sympathetic nerve activity in normal humans and patients with heart failure: Evidence from direct micronenrographic recordings , 1990 .
[26] Yanfeng Ding,et al. Arterial chemoreceptors and sympathetic nerve activity: implications for hypertension and heart failure. , 2007, Hypertension.
[27] F. Abboud,et al. Mechanosensitive currents in putative aortic baroreceptor neurons in vitro. , 1995, Journal of neurophysiology.
[28] K. Tracey,et al. Vagus nerve stimulation attenuates the systemic inflammatory response to endotoxin , 2000, Nature.
[29] A. Mark,et al. Direct evidence from intraneural recordings for increased central sympathetic outflow in patients with heart failure. , 1986, Circulation.
[30] Eric Gouaux,et al. Structure of acid-sensing ion channel 1 at 1.9 A resolution and low pH. , 2007, Nature.
[31] W. Cannon. The Way of an Investigator: A Scientist's Experiences in Medical Research , 1984 .
[32] M. Chalfie,et al. Degenerin similarities , 1993, Nature.
[33] C. Peers,et al. Inhibition of Ca(2+)‐activated K+ currents by intracellular acidosis in isolated type I cells of the neonatal rat carotid body. , 1991, The Journal of physiology.
[34] F. Abboud,et al. Non-voltage-gated Ca2+ influx through mechanosensitive ion channels in aortic baroreceptor neurons. , 1997, Circulation research.
[35] C HEYMANS,et al. Reflexogenic Areas of the Cardiovascular System , 2015, Perspectives in biology and medicine.
[36] F. Sachs,et al. Block of stretch-activated ion channels in Xenopus oocytes by gadolinium and calcium ions. , 1989, Science.
[37] M. Lazdunski,et al. A proton-gated cation channel involved in acid-sensing , 1997, Nature.
[38] C. Nurse. Neurotransmission and neuromodulation in the chemosensory carotid body , 2005, Autonomic Neuroscience.
[39] J. Bigger,et al. Baroreflex sensitivity and heart-rate variability in prediction of total cardiac mortality after myocardial infarction , 1998, The Lancet.
[40] F. Abboud,et al. Mechanical stimulation of neurites generates an inward current in putative aortic baroreceptor neurons in vitro , 1997, Brain Research.
[41] F. Abboud,et al. Acid-Sensing Ion Channels Contribute to Transduction of Extracellular Acidosis in Rat Carotid Body Glomus Cells , 2007, Circulation research.
[42] F. Abboud,et al. A Molecular Component of the Arterial Baroreceptor Mechanotransducer , 1998, Neuron.
[43] W. Cannon. The Wisdom of the Body , 1932 .
[44] H. Kirchheim. Systemic arterial baroreceptor reflexes. , 1976, Physiological reviews.
[45] R. Iturriaga,et al. Contribution of carotid body chemoreceptors and carotid sinus baroreceptors to the ventilatory and circulatory reflexes produced by common carotid occlusion. , 1988, Acta physiologica et pharmacologica latinoamericana : organo de la Asociacion Latinoamericana de Ciencias Fisiologicas y de la Asociacion Latinoamericana de Farmacologia.
[46] F. Abboud,et al. Potentiation of Sympathetic Nerve Responses to Hypoxia in Borderline Hypertensive Subjects , 1988, Hypertension.
[47] J. Cohn,et al. Plasma norepinephrine as a guide to prognosis in patients with chronic congestive heart failure. , 1984, The New England journal of medicine.
[48] C. Eyzaguirre,et al. Transduction mechanisms in carotid body: glomus cells, putative neurotransmitters, and nerve endings. , 1980, The American journal of physiology.
[49] G. Booz. Impact of T lymphocytes on cardiac remodeling in hypertension: more questions than answers. , 2006, Hypertension.
[50] M. Zimmerman,et al. Hypertension Caused by Angiotensin II Infusion Involves Increased Superoxide Production in the Central Nervous System , 2004, Circulation research.
[51] D. Corey,et al. The micromachinery of mechanotransduction in hair cells. , 2007, Annual review of neuroscience.
[52] F. Abboud,et al. Hydrogen Peroxide Mediates Post‐Excitatory Depression of Baroreceptor Afferent Activity in Vivo , 2009 .
[53] M. Welsh,et al. Heteromultimers of DEG/ENaC subunits form H+-gated channels in mouse sensory neurons , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[54] Ronney B Panerai,et al. Cardiac Baroreceptor Sensitivity Predicts Long-Term Outcome After Acute Ischemic Stroke , 2003, Stroke.
[55] F. Abboud. Ventricular syncope: is the heart a sensory organ? , 1989, The New England journal of medicine.
[56] D. Corey,et al. Transport and Localization of the DEG/ENaC Ion Channel BNaC1α to Peripheral Mechanosensory Terminals of Dorsal Root Ganglia Neurons , 2001, The Journal of Neuroscience.
[57] M. Chalfie,et al. The MEC-4 DEG/ENaC channel of Caenorhabditis elegans touch receptor neurons transduces mechanical signals , 2005, Nature Neuroscience.
[58] G. Grassi,et al. Sympathetic activation in the pathogenesis of hypertension and progression of organ damage. , 1999, Hypertension.
[59] M. Chalfie,et al. The mec-4 gene is a member of a family of Caenorhabditis elegans genes that can mutate to induce neuronal degeneration , 1991, Nature.
[60] F. Abboud,et al. Mechanosensory transduction of vagal and baroreceptor afferents revealed by study of isolated nodose neurons in culture , 2002, Autonomic Neuroscience.
[61] Kevin J. Tracey,et al. The inflammatory reflex , 2002, Nature.
[62] F. Abboud,et al. Effect of baroreceptor activity on ventilatory response to chemoreceptor stimulation. , 1975, Journal of applied physiology.
[63] Masaru Sugimachi,et al. Vagal Nerve Stimulation Markedly Improves Long-Term Survival After Chronic Heart Failure in Rats , 2003, Circulation.
[64] F. Abboud,et al. Gadolinium inhibits mechanoelectrical transduction in rabbit carotid baroreceptors. Implication of stretch-activated channels. , 1994, The Journal of clinical investigation.
[65] M. Chalfie,et al. Genetic control of differentiation of the Caenorhabditis elegans touch receptor neurons. , 1989, Science.
[66] E. Irwin,et al. Chronic Baroreceptor Activation Enhances Survival in Dogs With Pacing-Induced Heart Failure , 2007, Hypertension.
[67] E. Honoré,et al. An oxygen‐, acid‐ and anaesthetic‐sensitive TASK‐like background potassium channel in rat arterial chemoreceptor cells , 2000, The Journal of physiology.
[68] B. Parsons,et al. Adrenergic Effects on the Biology of the Adult Mammalian Cardiocyte , 1992, Circulation.
[69] Ruth E Wachtel,et al. Mechanosensitive ion channels in putative aortic baroreceptor neurons. , 1998, American journal of physiology. Heart and circulatory physiology.
[70] D. Harrison,et al. Age-Accelerated Atherosclerosis Correlates With Failure to Upregulate Antioxidant Genes , 2009, Circulation research.
[71] Judit K. Makara,et al. A pH‐sensitive chloride current in the chemoreceptor cell of rat carotid body , 2001, The Journal of physiology.
[72] F. Abboud,et al. Oxygen-derived free radicals contribute to baroreceptor dysfunction in atherosclerotic rabbits. , 1996, Circulation research.
[73] J. Filippone,et al. Baroreflex stimulation in the treatment of hypertension , 2007, Current opinion in nephrology and hypertension.
[74] D. Ferguson,et al. Clinical and hemodynamic correlates of sympathetic nerve activity in normal humans and patients with heart failure: evidence from direct microneurographic recordings. , 1990, Journal of the American College of Cardiology.
[75] Jie Chen,et al. ASIC2a and ASIC3 Heteromultimerize to Form pH-Sensitive Channels in Mouse Cardiac Dorsal Root Ganglia Neurons , 2009, Circulation research.
[76] J. López-Barneo,et al. Chemotransduction in the carotid body: K+ current modulated by PO2 in type I chemoreceptor cells. , 1988, Science.
[77] V P Fazan,et al. Morphology of aortic depressor nerve myelinated fibers in normotensive Wistar-Kyoto and spontaneously hypertensive rats. , 1999, Journal of the autonomic nervous system.
[78] F. Abboud,et al. Decreased mRNA expression of ASIC2a in nodose sensory ganglia is associated with development of hypertension in SHR , 2007 .
[79] D. Pimentel,et al. Norepinephrine stimulates apoptosis in adult rat ventricular myocytes by activation of the beta-adrenergic pathway. , 1998, Circulation.
[80] G D Pinna,et al. Arterial baroreflex modulation of heart rate in chronic heart failure: clinical and hemodynamic correlates and prognostic implications. , 1997, Circulation.
[81] Y. Fukuda,et al. Carotid chemoreceptor discharge responses to hypoxia and hypercapnia in normotensive and spontaneously hypertensive rats. , 1987, Journal of the autonomic nervous system.
[82] Lie Gao,et al. NADPH oxidase-derived superoxide anion mediates angiotensin II-enhanced carotid body chemoreceptor sensitivity in heart failure rabbits. , 2007, Cardiovascular research.
[83] E. Lumpkin,et al. Feeling the pressure in mammalian somatosensation , 2005, Current Opinion in Neurobiology.