Hemodynamic influences on mesenteric blood flow in shock conditions.
暂无分享,去创建一个
[1] H. Schäfers,et al. Dobutamine Versus Vasopressin After Mesenteric Ischemia. , 2019, The Journal of surgical research.
[2] L. Ding,et al. Prevalence and outcome of acute gastrointestinal injury in critically ill patients , 2018, Medicine.
[3] P. Veltink,et al. The influence of esmolol on right ventricular function in early experimental endotoxic shock , 2018, Physiological reports.
[4] C. Lehmann,et al. Immune response to systemic inflammation in the intestinal microcirculation. , 2018, Frontiers in bioscience.
[5] H. Schäfers,et al. Vasopressin as Therapy During Nonocclusive Mesenteric Ischemia. , 2016, The Annals of thoracic surgery.
[6] Y. Yeh,et al. Effects of different types of fluid resuscitation for hemorrhagic shock on splanchnic organ microcirculation and renal reactive oxygen species formation , 2015, Critical Care.
[7] Michael R. Pinsky,et al. Personalizing blood pressure management in septic shock , 2015, Annals of Intensive Care.
[8] A. Chao,et al. Laser speckle contrast imaging for assessing microcirculatory changes in multiple splanchnic organs and the gracilis muscle during hemorrhagic shock and fluid resuscitation. , 2015, Microvascular research.
[9] F. Vandenesch,et al. Gut and sublingual microvascular effect of esmolol during septic shock in a porcine model , 2015, Critical Care.
[10] M. Steinfath,et al. Hydroxyethyl Starch (HES 130/0.4) Impairs Intestinal Barrier Integrity and Metabolic Function: Findings from a Mouse Model of the Isolated Perfused Small Intestine , 2015, PloS one.
[11] C. Thiemermann,et al. Quantification of microcirculatory blood flow: a sensitive and clinically relevant prognostic marker in murine models of sepsis , 2014, Journal of applied physiology.
[12] C. Lehmann,et al. Desmopressin improves intestinal functional capillary density and decreases leukocyte activation in experimental endotoxemia. , 2015, Microvascular research.
[13] Claude Guerin,et al. High versus low blood-pressure target in patients with septic shock. , 2014, The New England journal of medicine.
[14] H. Schäfers,et al. Endothelin and vasopressin influence splanchnic blood flow distribution during and after cardiopulmonary bypass. , 2013, The Journal of thoracic and cardiovascular surgery.
[15] M. Rundgren,et al. Gut microcirculatory and mitochondrial effects of hyperdynamic endotoxaemic shock and norepinephrine treatment. , 2012, British journal of anaesthesia.
[16] S. Jakob,et al. Gastrointestinal function in intensive care patients: terminology, definitions and management. Recommendations of the ESICM Working Group on Abdominal Problems , 2012, Intensive Care Medicine.
[17] Biao Xu,et al. Cardiopulmonary bypass induced microcirculatory injury of the small bowel in rats. , 2009, World journal of gastroenterology.
[18] A. Thorén,et al. Vasopressin decreases intestinal mucosal perfusion: a clinical study on cardiac surgery patients in vasodilatory shock , 2009, Acta anaesthesiologica Scandinavica.
[19] J. Starkopf,et al. Gastrointestinal Failure score in critically ill patients: a prospective observational study , 2008, Critical care.
[20] P. Cury,et al. Comparison of the effects of lactated Ringer solution with and without hydroxyethyl starch fluid resuscitation on gut edema during severe splanchnic ischemia. , 2008, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[21] D. Payen,et al. Systemic and hepatosplanchnic macro- and microcirculatory dose response to arginine vasopressin in endotoxic rabbits , 2008, Intensive Care Medicine.
[22] C. Ince,et al. Persistent villi hypoperfusion explains intramucosal acidosis in sheep endotoxemia* , 2008, Critical care medicine.
[23] K. Vollebregt,et al. The NO donor SIN‐1 improves intestinal–arterial Pco2 gap in experimental endotoxemia: an animal study , 2007, Acta anaesthesiologica Scandinavica.
[24] A. Thorén,et al. NOREPINEPHRINE AND INTESTINAL MUCOSAL PERFUSION IN VASODILATORY SHOCK AFTER CARDIAC SURGERY , 2007, Shock.
[25] J. Takala,et al. Effects of Vasopressin on Microcirculatory Blood Flow in the Gastrointestinal Tract in Anesthetized Pigs in Septic Shock , 2007, Anesthesiology.
[26] C. Ince,et al. Relationship between sublingual and intestinal microcirculatory perfusion in patients with abdominal sepsis* , 2007, Critical care medicine.
[27] R. N. Garrison,et al. Hypertonic saline resuscitation improves intestinal microcirculation in a rat model of hemorrhagic shock. , 2006, Surgery.
[28] O. Lesur,et al. Review article: Organ per fusion/permeabilityrelated effects of norepinephrine and vasopressin in sepsis , 2006, Canadian journal of anaesthesia = Journal canadien d'anesthesie.
[29] O. V. Hein,et al. Effects of dopexamine on the intestinal microvascular blood flow and leucocyte activation in a sepsis model in rats , 2006, Critical care.
[30] M. Georgieff,et al. Effect of increased cardiac output on hepatic and intestinal microcirculatory blood flow, oxygenation, and metabolism in hyperdynamic murine septic shock , 2005, Critical care medicine.
[31] V. Wenzel,et al. Arginine vasopressin reduces intestinal oxygen supply and mucosal tissue oxygen tension. , 2005, American journal of physiology. Heart and circulatory physiology.
[32] E. Ruokonen,et al. Epinephrine induces tissue perfusion deficit in porcine endotoxin shock: evaluation by regional CO(2) content gradients and lactate-to-pyruvate ratios. , 2005, American journal of physiology. Gastrointestinal and liver physiology.
[33] Rinaldo Bellomo,et al. The haemodynamic and metabolic effects of epinephrine in experimental hyperdynamic septic shock , 2005, Intensive Care Medicine.
[34] M. Boros,et al. Heterogeneous Microcirculation in the Rat Small Intestine during Hemorrhagic Shock: Quantification of the Effects of Hypertonic-Hyperoncotic Resuscitation , 2004, European Surgical Research.
[35] V. Richard,et al. Changes in mesenteric vascular reactivity and inflammatory response after cardiopulmonary bypass in a rat model. , 2004, The Annals of thoracic surgery.
[36] C. Burger,et al. Acute mesenteric ischemia: a clinical review. , 2004, Archives of internal medicine.
[37] G. Fadda,et al. Cardiopulmonary bypass in man: role of the intestine in a self-limiting inflammatory response with demonstrable bacterial translocation. , 2004, The Annals of thoracic surgery.
[38] E. Ruokonen,et al. The Effects of Vasopressin on Systemic and Splanchnic Hemodynamics and Metabolism in Endotoxin Shock , 2003, Anesthesia and analgesia.
[39] F. W. Rozendaal,et al. The Effect of Vasopressin on Gastric Perfusion in Catecholamine-Dependent Patients in Septic Shock , 2003 .
[40] E. Ruokonen,et al. Dopexamine reverses colonic but not gastric mucosal perfusion defects in lethal endotoxin shock. , 2003, British journal of anaesthesia.
[41] G. Johansson,et al. Effects of dopexamine and positive end-expiratory pressure on intestinal blood flow and oxygenation: the perfusion pressure perspective. , 2003, Chest.
[42] A. Thorén,et al. Effects of norepinephrine alone and norepinephrine plus dopamine on human intestinal mucosal perfusion , 2003, Intensive Care Medicine.
[43] J. Vincent,et al. Effects of dopamine, norepinephrine, and epinephrine on the splanchnic circulation in septic shock: which is best? , 2003, Critical care medicine.
[44] M. Dünser,et al. Arginine Vasopressin in Advanced Vasodilatory Shock: A Prospective, Randomized, Controlled Study , 2003, Circulation.
[45] G. Sigurdsson,et al. Redistribution of Microcirculatory Blood Flow within the Intestinal Wall during Sepsis and General Anesthesia , 2003, Anesthesiology.
[46] S. Hagl,et al. Dopexamine attenuates microvascular perfusion injury of the small bowel in pigs induced by extracorporeal circulation. , 2002, British journal of anaesthesia.
[47] W. Studer,et al. Resuscitation from cardiac arrest with adrenaline/epinephrine or vasopressin: effects on intestinal mucosal tonometer pCO(2) during the postresuscitation period in rats. , 2002, Resuscitation.
[48] E. Vicaut,et al. Microcirculation in intestinal villi: a comparison between hemorrhagic and endotoxin shock. , 2001, American journal of respiratory and critical care medicine.
[49] L. Fändriks,et al. Angiotensin II blockade in existing hypovolemia: effects of candesartan in the porcine splanchnic and renal circulation. , 2000, Shock.
[50] G. Sigurdsson,et al. Dynamic study of the distribution of microcirculatory blood flow in multiple splanchnic organs in septic shock , 2000, Critical care medicine.
[51] M. Wilson,et al. Regulation of intestinal blood flow. , 2000, The Journal of surgical research.
[52] M. Elam,et al. Differential effects of dopamine, dopexamine, and dobutamine on jejunal mucosal perfusion early after cardiac surgery , 2000, Critical Care Medicine.
[53] B. Capps,et al. VACM-1, a cullin gene family member, regulates cellular signaling. , 2000, American Journal of Physiology - Cell Physiology.
[54] P. Reilly,et al. MESENTERIC VASOCONSTRICTION IN RESPONSE TO HEMORRHAGIC SHOCK , 2000, Shock.
[55] G. Sigurdsson,et al. Continuous measurements of microcirculatory blood flow in gastrointestinal organs during acute haemorrhage. , 2000, British journal of anaesthesia.
[56] L. Fändriks,et al. Specific angiotensin II receptor blockade improves intestinal perfusion during graded hypovolemia in pigs , 2000, Critical care medicine.
[57] R. Guyton,et al. Hypothermic circulatory arrest causes multisystem vascular endothelial dysfunction and apoptosis. , 2000, The Annals of thoracic surgery.
[58] W. Voelckel,et al. Effect of small-dose dopamine on mesenteric blood flow and renal function in a pig model of cardiopulmonary resuscitation with vasopressin. , 1999, Anesthesia and Analgesia.
[59] P. Barie. Schemes against ischemia; solutions for reperfusion (injury)? , 1999, Critical Care Medicine.
[60] R. Wait,et al. Profile of neurohumoral agents on mesenteric and intestinal blood flow in health and disease. , 1998, Physiological Research.
[61] L. Fändriks,et al. SYMPATHETIC AND RENIN‐ANGIOTENSIN ACTIVATION DURING GRADED HYPOVOLEMIA IN PIGS: IMPACT ON MESENTERIC PERFUSION AND DUODENAL MUCOSAL FUNCTION , 1997, Shock.
[62] B. Schwarz,et al. Dopamine and intestinal mucosal tissue oxygenation in a porcine model of haemorrhage. , 1997, British Journal of Anaesthesia.
[63] K. Mitamura,et al. Evaluation of rectal mucosal hemodynamics in patients with liver cirrhosis using reflectance spectrophotometry. , 1997, American Journal of Gastroenterology.
[64] M. Weyand,et al. Effects of Dopexamine on Creatinine Clearance, Systemic Inflammation, and Splanchnic Oxygenation in Patients Undergoing Coronary Artery Bypass Grafting , 1997, Anesthesia and analgesia.
[65] K. Reinhart,et al. The effects of low-dose dopamine on splanchnic blood flow and oxygen uptake in patients with septic shock , 1997, Intensive Care Medicine.
[66] B. Gewertz,et al. Defining the critical limit of oxygen extraction in the human small intestine. , 1996, Journal of vascular surgery.
[67] E. Martin,et al. Effect of low-dose dopamine on intestinal villus microcirculation during normotensive endotoxaemia in rats. , 1996, British journal of anaesthesia.
[68] E. Martin,et al. Effect of endotoxemia on intestinal villus microcirculation in rats. , 1996, The Journal of surgical research.
[69] L. Thijs,et al. The fall of cardiac output in endotoxemic rats cannot explain all changes in organ blood flow: a comparison between endotoxin and low venous return shock. , 1996 .
[70] A. Webb,et al. Goal-directed therapy with dopexamine, dobutamine, and volume expansion: effects of systemic oxygen transport on hepatic ultrastructure in porcine sepsis. , 1995, Critical care medicine.
[71] E. Ruokonen,et al. Gastric mucosal pH does not reflect changes in splanchnic blood flow after cardiac surgery. , 1995, British journal of anaesthesia.
[72] J. Benoit,et al. Vascular NE responsiveness in portal hypertension: role of portal pressure and portosystemic shunting. , 1994, American Journal of Physiology.
[73] E. Ruokonen,et al. Regional blood flow and oxygen transport in patients with the low cardiac output syndrome after cardiac surgery , 1993, Critical care medicine.
[74] J. Takala,et al. Regional blood flow and oxygen transport in septic shock , 1993, Critical care medicine.
[75] M. Wilson,et al. Microvascular vasoconstriction and mucosal hypoperfusion of the rat small intestine during bacteremia. , 1993, Circulatory shock.
[76] J. Rodés,et al. Increased gastric mucosal perfusion in cirrhotic patients with portal hypertensive gastropathy. , 1992, Gastroenterology.
[77] A. P. Shepherd,et al. Gastrointestinal Blood Flow , 1990 .
[78] K. Voigt,et al. Patterns of endocrine secretion during sepsis. , 1989, Progress in clinical and biological research.
[79] S. Hamilton,et al. Pathogenesis of Nonocclusive Ischemic Colitis , 1986, Annals of surgery.
[80] C. Leier,et al. Relationship between central hemodynamics and regional blood flow in normal subjects and in patients with congestive heart failure. , 1984, Circulation.
[81] D. Granger,et al. Regulation of colonic blood flow. , 1982, Federation proceedings.
[82] M. Gershon,et al. The nervous system of the gut , 1981 .
[83] A. García Gil,et al. [Ischemic colitis]. , 1981, Revista espanola de las enfermedades del aparato digestivo.
[84] R. Alexander,et al. Identification and Characterization of the High Affinity Vascular Angiotensin II Receptor in Rat Mesenteric Artery , 1980, Circulation research.
[85] H. Granger,et al. Intrinsic regulation of intestinal oxygenation in the anesthetized dog. , 1980, The American journal of physiology.
[86] P. Richardson,et al. Intestinal blood flow. , 1980, Gastroenterology.
[87] C. Pang,et al. Vasopressin and angiotensin: reciprocal mechanisms controlling mesenteric conductance. , 1977, The American journal of physiology.
[88] R. Türker,et al. High degree of conversion of angiotensin I to angiotensin II in the mesenteric circulation of the isolated perfused terminal ileum of the cat. , 1975, Archives internationales de physiologie et de biochimie.
[89] J. Svanvik,et al. Mucosal hemodynamics in the small intestine of the cat during reduced perfusion pressure. , 1973, Acta physiologica Scandinavica.
[90] S. Britton,et al. Effects of Angiotensin I and Angiotensin II on Canine Hepatic Vascular Resistance , 1973, Circulation research.
[91] W. Beyer,et al. The treatment of endotoxin shock by beta adrenergic blockade. , 1969, Annals of Surgery.