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Administration of ghrelin associated with decreased expression of matrix metalloproteinase-9 following normobaric systemic hypoxia in the brain

ischemia. Glia 50, 329–339, 2005. Diano S, Farr SS, Benoit SC, McNay EC, Silva I, Horvath B, Gaskin FS, Nonaka N, Jaeger LB, Banks MA, Morley JE, Pinto S, Sherwin RS, Xu L, Yamada KA, Sleeman MW, Tschop MH, Horvath TL. Ghrelin controls hippo-campal spine synapse density and memory performance. Nat Neurosci 9, 381–388, 2006. Duansak N, Schmid-Schonbein GW. The oxygen free radicals control MMP-9 and transcription factors expression in the spontaneously hypertensive rat. Microvasc Res 90, 154–161, 2013. Duran-Vilaregut J, del Valle J, Manich G, Camins A

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Flaxseed oil supplementation manipulates correlations between serum individual mol % free fatty acid levels and insulin resistance in type 2 diabetics. Insulin resistance and percent remaining pancreatic β-cell function are unaffected

effects of n-3 fatty acids from linseed oil and fish oil in well-controlled type 2 diabetes. Diabetes Care 19, 463–467, 1996. Mehta A, Oeser AM, Carlson MG. Rapid quantitation of free fatty acids in human plasma by high-performance liquid chromatography. J Chromatogr B Biomed Sci Appl 719, 9–23, 1998. Montori V, Wollan P, Farmer A, Dinneen S. Fish oil supplementation in type 2 diabetes. Diabetes Care 23, 1407–1415, 2000. Moore PC, Ugas MA, Hagman DK, Parazzoli SD, Poitout V. Evidence against the involvement of oxidative stress in fatty acid inhibition

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Bidirectional asymmetry in the neurovisceral communication for the cardiovascular control: New insights

kidney angiotensinase activities in spontaneously hypertensive rats. Planta Med 81, 664–669, 2015. Williams DP, Cash C, Rankin C, Bernardi A, Koenig J, Thayer JF. Resting heart rate variability predicts self-reported difficulties in emotion regulation: a focus on different facets of emotion regulation. Front Psychol 6, 261, 2015. Xavier CH, Beig MI, Ianzer D, Fontes MA, Nalivaiko E. Asymmetry in the control of cardiac performance by dorsomedial hypothalamus. Am J Physiol Regul Integr Comp Physiol 304, R664–R674, 2013. Xu B, Zheng H, Patel KP. Enhanced

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A short review of primary aldosteronism in a question and answer fashion

. Characterization of adrenal masses by using FDG PET: a systematic review and meta-analysis of diagnostic test performance. Radiology 259, 117-126, 2011. Brown NJ. Aldosterone and end-organ damage. Curr Opin Nephrol Hypertens 14, 235-241, 2005. Brown MJ. Primary Aldosteronism: the spectre of cure. Clin Endocrinol (Oxf) 82, 785-788, 2015. Brunt LM. Minimal access adrenal surgery. Surg Endosc 20, 351-361, 2006. Brunt LM, Moley JF. Adrenal incidentaloma. World J Surg 25, 905-913, 2001. Burton TJ

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Radiology of the adrenal incidentalomas. Review of the literature

, Scott JA, Kalra MK. Characterization of adrenal masses by using FDG PET: a systematic review and meta-analysis of diagnostic test performance. Radiology 259, 117-126, 2011. Bowerman RA, Silver TM, Jaff e MH, Stuck KJ, Hinerman DL. Sonography of adrenal pheochromocytomas. AJR Am J Roentgenol 137, 1227-1231, 1981. Bulow B, Jansson S, Juhlin C, Steen L, Th oren M, Wahrenberg H, Valdemarsson S, Wangberg B, Ahren B. Adrenal incidentaloma - follow-up results from a Swedish prospective study. Eur J Endocrinol 154, 419-423, 2006

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