Suchbegriffe: AUTOREGULATION, . Treffer: 43
Dumancic, D; Stupin, A; Kozul, M; Seric, V; Kibel, A; Goswami, N; Brix, B; Debeljak, Z; Scitovski, R; Drenjancevic, I
Increased cerebral vascular resistance underlies preserved cerebral blood flow in response to orthostasis in humans on a high-salt diet
EUR J APPL PHYSIOL. 2023;
Doi: 10.1007/s00421-022-05124-w
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Pfurtscheller, D; Wolfsberger, CH; Höller, N; Schwaberger, B; Mileder, LP; Baik-Schneditz, N; Urlesberger, B; Schmölzer, GM; Pichler, G
Cardiac output and regional-cerebral-oxygen-saturation in preterm neonates during immediate postnatal transition: An observational study.
Acta Paediatr. 2023;
Doi: 10.1111/apa.16745
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Allerkamp, HH; Pole, T; Boukham, A; James, JL; Clark, AR
Pregnancy-specific uterine vascular reactivity: a data-driven computational model of shear-dependent, myogenic, and mechanical radial artery features.
Am J Physiol Heart Circ Physiol. 2022; 323(1): H72-H88.
Doi: 10.1152/ajpheart.00693.2021
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Fazekas, C; Linder, D; Matzer, F; Jenewein, J; Hanfstingl, B
Interpreting physical sensations to guide health-related behavior : An introductory review on psychosomatic competence.
Wien Klin Wochenschr. 2022; 134(Suppl 1):3-10
Doi: 10.1007/s00508-021-01988-8
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Pfurtscheller, D; Wolfsberger, CH; Höller, N; Schwaberger, B; Mileder, L; Baik-Schneditz, N; Urlesberger, B; Pichler, G
Correlation between arterial blood pressures and regional cerebral oxygen saturation in preterm neonates during postnatal transition-an observational study.
Front Pediatr. 2022; 10: 952703
Doi: 10.3389/fped.2022.952703
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Suppan, E; Urlesberger, B; Schwaberger, B; Höller, N; Wolfsberger, CH; Avian, A; Pichler, G
Fetal Hemoglobin and Cerebral Tissue Oxygenation during Immediate Postnatal Transition.
Neonatology. 2022; 119(5):602-610
Doi: 10.1159/000525847
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Badurdeen, S; Gill, AW; Kluckow, M; Roberts, CT; Galinsky, R; Klink, S; Miller, SL; Davis, PG; Schmölzer, GM; Hooper, SB; Polglase, GR
Excess cerebral oxygen delivery follows return of spontaneous circulation in near-term asphyxiated lambs.
Sci Rep. 2020; 10(1):16443-16443
Doi: 10.1038/s41598-020-73453-x
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Birkl, C; Langkammer, C; Sati, P; Enzinger, C; Fazekas, F; Ropele, S
Quantitative Susceptibility Mapping to Assess Cerebral Vascular Compliance.
AJNR Am J Neuroradiol. 2019; 40(3):460-463
Doi: 10.3174/ajnr.A5933
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Oravecz, K; Kormos, A; Gruber, A; Márton, Z; Kohajda, Z; Mirzaei, L; Jost, N; Levijoki, J; Pollesello, P; Koskelainen, T; Otsomaa, L; Tóth, A; Papp, JG; Nánási, PP; Antoons, G; Varró, A; Acsai, K; Nagy, N
Inotropic effect of NCX inhibition depends on the relative activity of the reverse NCX assessed by a novel inhibitor ORM-10962 on canine ventricular myocytes.
Eur J Pharmacol. 2018; 818(5):278-286
Doi: 10.1016/j.ejphar.2017.10.039
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Goswami, N
Falls and Fall-Prevention in Older Persons: Geriatrics Meets Spaceflight!
Front Physiol. 2017; 8(5):603-603
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Binder-Heschl, C; Urlesberger, B; Schwaberger, B; Koestenberger, M; Pichler, G
Borderline hypotension: how does it influence cerebral regional tissue oxygenation in preterm infants?
J Matern Fetal Neonatal Med. 2016; 29(14):2341-2346
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Bosche, B; Molcanyi, M; Noll, T; Rej, S; Zatschler, B; Doeppner, TR; Hescheler, J; Müller, DJ; Macdonald, RL; Härtel, FV
A differential impact of lithium on endothelium-dependent but not on endothelium-independent vessel relaxation.
Prog Neuropsychopharmacol Biol Psychiatry. 2016; 67(4):98-106
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Weber, T; Lang, I; Zweiker, R; Horn, S; Wenzel, RR; Watschinger, B; Slany, J; Eber, B; Roithinger, FX; Metzler, B
Hypertension and coronary artery disease: epidemiology, physiology, effects of treatment, and recommendations : A joint scientific statement from the Austrian Society of Cardiology and the Austrian Society of Hypertension.
Wien Klin Wochenschr. 2016; 128(13-14):467-479
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Goswami, N; Bruner, M; Xu, D; Bareille, MP; Beck, A; Hinghofer-Szalkay, H; Blaber, AP
Short-arm human centrifugation with 0.4g at eye and 0.75g at heart level provides similar cerebrovascular and cardiovascular responses to standing.
Eur J Appl Physiol. 2015; 115(7):1569-1575
Doi: 10.1007/s00421-015-3142-8
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Blaber, AP; Zuj, KA; Goswami, N
Cerebrovascular autoregulation: lessons learned from spaceflight research.
Eur J Appl Physiol. 2013; 113(8):1909-1917
Doi: 10.1007/s00421-012-2539-x
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Boltz, A; Schmidl, D; Werkmeister, RM; Lasta, M; Kaya, S; Palkovits, S; Told, R; Napora, KJ; Popa-Cherecheanu, A; Garhöfer, G; Schmetterer, L
Regulation of optic nerve head blood flow during combined changes in intraocular pressure and arterial blood pressure.
J Cereb Blood Flow Metab. 2013; 33(12):1850-1856
Doi: 10.1038/jcbfm.2013.137
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Goswami, N; Batzel, JJ; Clément, G; Stein, TP; Hargens, AR; Sharp, MK; Blaber, AP; Roma, PG; Hinghofer-Szalkay, HG
Maximizing information from space data resources: a case for expanding integration across research disciplines.
Eur J Appl Physiol. 2013; 113(7):1645-1654
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Palkovits, S; Fuchsjäger-Mayrl, G; Kautzky-Willer, A; Richter-Müksch, S; Prinz, A; Vécsei-Marlovits, V; Garhöfer, G; Schmetterer, L
Retinal white blood cell flux and systemic blood pressure in patients with type 1 diabetes.
Graefes Arch Clin Exp Ophthalmol. 2013; 251(6):1475-1481
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Schlager, O; Widhalm, K; Hammer, A; Giurgea, A; Margeta, C; Fritsch, M; Zehetmayer, S; Koppensteiner, R; Gschwandtner, ME; Willfort-Ehringer, A
Familial hypercholesterolemia affects microvascular autoregulation in children.
Metabolism. 2013; 62(6): 820-827.
Doi: 10.1016/j.metabol.2012.12.013
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Schmidl, D; Boltz, A; Kaya, S; Palkovits, S; Told, R; Napora, KJ; Cherecheanu, AP; Werkmeister, RM; Garhofer, G; Schmetterer, L
Role of nitric oxide in optic nerve head blood flow regulation during an experimental increase in intraocular pressure in healthy humans.
Exp Eye Res. 2013; 116(8):247-253
Doi: 10.1016/j.exer.2013.09.008
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Vogt, S; Venjakob, AJ; Stöckl, K; Tischer, T; Jost, PJ; Imhoff, AB; Thein, E; Anetzberger, H
Evidence of an autoregulatory mechanism of regional bone blood flow at hypotension.
Arch Orthop Trauma Surg. 2013; 133(9):1233-1241
Doi: 10.1007/s00402-013-1801-y
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Schlager, O; Hammer, A; Willfort-Ehringer, A; Fritsch, M; Rami-Merhar, B; Schober, E; Nagl, K; Giurgea, A; Margeta, C; Zehetmayer, S; Schernthaner, GH; Koppensteiner, R; Gschwandtner, ME
Microvascular autoregulation in children and adolescents with type 1 diabetes mellitus.
Diabetologia. 2012; 55(6): 1633-1640.
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Jungehuelsing, GJ; Liman, TG; Brunecker, P; Ebel, A; Endres, M; Buschmann, I; Pagonas, N; Buschmann, EE; Arteriogenesis Network; Center for Stroke Research Berlin
Does external counterpulsation augment mean cerebral blood flow in the healthy brain? Effects of external counterpulsation on middle cerebral artery flow velocity and cerebrovascular regulatory response in healthy subjects.
Cerebrovasc Dis. 2010; 30(6): 612-617.
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Hinghofer-Szalkay, HG; Goswami, N; Roessler, A; Grasser, EK; Schneditz, D
Reactive hyperemia in the human liver.
Am J Physiol Gastrointest Liver Physiol. 2008; 295(2): G332-G337.
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Hiltebrand, LB; Pestel, G; Hager, H; Ratnaraj, J; Sigurdsson, GH; Kurz, A
Perioperative fluid management: comparison of high, medium and low fluid volume on tissue oxygen pressure in the small bowel and colon.
Eur J Anaesthesiol. 2007; 24(11):927-33
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Zotter, H; Urlesberger, B; Kerbl, R; Mueller, W; Pichler, G; Curzi-Dascalova, L
Cerebral hemodynamics during arousals in preterm infants.
Early Hum Dev. 2007; 83(4): 239-246.
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Pichler, G; Urlesberger, B; Schmölzer, G; Müller, W
Effect of tilting on cerebral haemodynamics in preterm infants with periventricular leucencephalomalacia.
Acta Paediatr. 2004; 93(1): 70-75.
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Oberkofler, H; Schraml, E; Krempler, F; Patsch, W
Potentiation of liver X receptor transcriptional activity by peroxisome-proliferator-activated receptor gamma co-activator 1 alpha.
Biochem J. 2003; 371(Pt 1):89-96
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Metry, G; Spittle, M; Rahmati, S; Giller, C; Giller, A; Kaufman, A; Schneditz, D; Manno, E; Brener, Z; Boniece, I; Ronco, F; Ronco, C; Levin, NW
Online monitoring of cerebral hemodynamics during hemodialysis.
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Graf, BM; Vicenzi, MN; Bosnjak, ZJ; Stowe, DF
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Wascher, TC; Bachernegg, M; Kickenweiz, E; Stark, G; Stark, U; Toplak, H; Graier, WF; Krejs, GJ
Elevation of D-glucose impairs coronary artery autoregulation after slight reduction of coronary flow.
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