Michelini LC (2007) The NTS and integration of cardiovascular control during exercise in
normotensive and hypertensive individuals. Curr Hypertens 9(3):214–221
Michelini LC, O’Leary DS, Raven PB et al (2015) Neural control of circulation and exercise:
a translational approach disclosing interactions between central command, arterial barore-
flex, and muscle metaboreflex. Am J Physiol Heart Circ Physiol 309(3):H381–H392
Abboud FM, Harwani SC, Chapleau MW (2012) Autonomic neural regulation of the
immune system: implications for hypertension and cardiovascular disease. Hypertension
59(4):755–762
Michelini LC, Stern JE (2009) Exercise-induced neuronal plasticity in central autonomic
networks: role in cardiovascular control. Exp Physiol 94(9):947–960
Zubcevic J, Waki H, Raizada MK et al (2011) Autonomic-immune-vascular interaction: an
emerging concept for neurogenic hypertension. Hypertension 57(6):1026–1033
Lu Y, Ma X, Sabharwal R et al (2009) The ion channel ASIC2 is required for baroreceptor and
autonomic control of the circulation. Neuron 64(6):885–897
Lau OC, Shen B, Wong CO et al (2016) TRPC5 channels participate in pressure-sensing in
aortic baroreceptors. Nat Commun 7:11947
Sladek CD, Michelini LC, Stachenfeld NS et al (2015) Endocrine-autonomic linkages.
Compr Physiol 5(3):1281–1323
Bailey TW, Jin YH, Doyle MW et al (2006) Vasopressin inhibits glutamate release via two
distinct modes in the brainstem. J Neurosci 26(23):6131–6142
Dufloth DL, Morris M, Michelini LC (1997) Modulation of exercise tachycardia by vasopres-
sin in the nucleus tractus solitarii. Am J Physiol 273(4 Pt 2):R1271–R1282
Higa KT, Mori E, Viana FF et al (2002) Baroreflex control of heart rate by oxytocin in the
solitary-vagal complex. Am J Physiol Regul Integr Comp Physiol 282(2):R537–R545
Michelini LC (2007) Differential effects of vasopressinergic and oxytocinergic pre- autonomic
neurons on circulatory control: reflex mechanisms and changes during exercise. Clin Exp
Pharmacol Physiol 34(4):369–376
Peters JH, McDougall SJ, Kellet DO et al (2008) Oxytocin enhances cranial visceral afferent
synaptic transmission to the solitary tract nucleus. J Neurosci 28(45):11731–11740
Minami N, Imai Y, Munakata M et al (1989) Age-related changes in blood pressure, heart rate
and baroreflex sensitivity in SHR. Clin Exp Pharmacol Physiol Suppl 15(s15):85–87
Sun Z (2015) Aging, arterial stiffness, and hypertension. Hypertension 65(2):252–256
Santisteban MM, Kim S, Pepine CJ (2016) Brain-gut-bone marrow Axis: implications for
hypertension and related therapeutics. Circ Res 118(8):1327–1336
Sun Y, Fan J, Chai D et al (2016) Oxidative stress is involved in the renal dysfunction induced
by Sinoaortic denervation in rats. Chem Pharm Bull (Tokyo) 64(10):1458–1465
Mitchell GF (2014) Arterial stiffness and hypertension. Hypertension 64(1):13–18
Okada Y, Galbreath MM, Shibata S (2012) Relationship between sympathetic baroreflex sen-
sitivity and arterial stiffness in elderly men and women. Hypertension 59(1):98–104
Kai H, Kudo H, Takayama N et al (2009) Large blood pressure variability and hypertensive
cardiac remodeling--role of cardiac inflammation. Circ J 73(12):2198–2203
Kudo H, Kai H, Kajimoto H et al (2009) Exaggerated blood pressure variability superim-
posed on hypertension aggravates cardiac remodeling in rats via angiotensin II system-
mediated chronic inflammation. Hypertension 54(4):832–838
Lu L, Guo L, Xie TT et al (2015) Angiotensin converting enzyme is involved in the cardiac
hypertrophy induced by sinoaortic denervation in rats. Cardiovasc Pathol 24(1):41–48
Zhang L, Li F, Zhi G et al (2015) NADPH oxidase contributes to the left ventricular dysfunc-
tion induced by sinoaortic denervation in rats. Free Radic Res 49(1):57–66
Briest W, Homagk L, Rassier B et al (2004) Norepinephrine-induced changes in cardiac trans-
forming growth factor-beta isoform expression pattern of female and male rats. Hypertension
44(4):410–418
Levick SP, Murray DB, Janicki JS et al (2010) Sympathetic nervous system modulation of
inflammation and remodeling in the hypertensive heart. Hypertension 55(2):270–276