Targeted resuscitation strategies after injury
暂无分享,去创建一个
R. Bilkovski | E. Rivers | Emanuel P Rivers | Robert N Bilkovski | H Matilda Horst | H. Horst | Robert N Bilkovski | Emanuel P. Rivers
[1] G. Jacobsen,et al. Early lactate clearance is associated with improved outcome in severe sepsis and septic shock* , 2004, Critical care medicine.
[2] K. Proctor,et al. Noninvasive muscle oxygenation to guide fluid resuscitation after traumatic shock. , 2004, Surgery.
[3] Eliézer Silva,et al. Cardiac output determination during experimental hemorrhage and resuscitation using a transesophageal Doppler monitor. , 2004, Artificial organs.
[4] K. Kochanek,et al. Deaths: preliminary data for 2002. , 2004, National vital statistics reports : from the Centers for Disease Control and Prevention, National Center for Health Statistics, National Vital Statistics System.
[5] Gustavo C. Rodriguez,et al. The Clinical Use of an Esophageal Doppler Monitor for Hemodynamic Monitoring in Sepsis , 1999, Journal of Clinical Monitoring and Computing.
[6] P. Angood,et al. The esophageal Doppler monitor in mechanically ventilated surgical patients: does it work? , 2003, The Journal of trauma.
[7] Eduardo R Migliaro,et al. Heart rate variability as early marker of multiple organ dysfunction syndrome in septic patients. , 2003, Journal of critical care.
[8] C. Cocanour,et al. Supranormal trauma resuscitation causes more cases of abdominal compartment syndrome. , 2003, Archives of surgery.
[9] C. Wade,et al. Efficacy of hypertonic saline dextran fluid resuscitation for patients with hypotension from penetrating trauma. , 2003, The Journal of trauma.
[10] S. Steele,et al. Serum lactate and base deficit as predictors of mortality and morbidity. , 2003, American journal of surgery.
[11] P. Marik,et al. Sublingual capnometry versus traditional markers of tissue oxygenation in critically ill patients* , 2003, Critical care medicine.
[12] J. Kellum,et al. Resuscitation with Ringer's Ethyl Pyruvate Solution Prolongs Survival and Modulates Plasma Cytokine and Nitrite/Nitrate Concentrations in a Rat Model of Lipopolysaccharide-Induced Shock , 2002, Shock.
[13] C. Young,et al. Lithium dilution cardiac output measurement: A clinical assessment of central venous and peripheral venous indicator injection* , 2002, Critical care medicine.
[14] P. Glass,et al. Goal-directed Intraoperative Fluid Administration Reduces Length of Hospital Stay after Major Surgery , 2002, Anesthesiology.
[15] K. Tracey,et al. Ethyl pyruvate prevents lethality in mice with established lethal sepsis and systemic inflammation , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[16] Jean-Charles Preiser,et al. Microvascular blood flow is altered in patients with sepsis. , 2002, American journal of respiratory and critical care medicine.
[17] Sachin Shah,et al. Heart rate variability in emergency department patients with sepsis. , 2002, Academic emergency medicine : official journal of the Society for Academic Emergency Medicine.
[18] M. Fink,et al. Ethyl pyruvate modulates inflammatory gene expression in mice subjected to hemorrhagic shock. , 2002, American journal of physiology. Gastrointestinal and liver physiology.
[19] Thomas M Scalea,et al. Hypotensive resuscitation during active hemorrhage: impact on in-hospital mortality. , 2002, The Journal of trauma.
[20] P. Rhee,et al. Effects of lactated Ringer's solutions on human leukocytes. , 2002, The Journal of trauma.
[21] H. Brock,et al. Monitoring intravascular volumes for postoperative volume therapy. , 2002, European journal of anaesthesiology.
[22] E. Ivers,et al. Early Goal-Directed Therapy in the Treatment of Severe Sepsis and Septic Shock , 2001 .
[23] D Bishop,et al. Evaluation of the Accusport® Lactate Analyser , 2001, International journal of sports medicine.
[24] M. Fink,et al. Ringer’s ethyl pyruvate solution ameliorates ischemia/reperfusion-induced intestinal mucosal injury in rats , 2001, Critical care medicine.
[25] D. Maass,et al. Hypertonic saline-dextran suppresses burn-related cytokine secretion by cardiomyocytes. , 2001, American journal of physiology. Heart and circulatory physiology.
[26] D. Pinsky,et al. The endothelial response to oxygen deprivation: biology and clinical implications , 2001, Intensive Care Medicine.
[27] O. Rotstein,et al. Novel strategies for immunomodulation after trauma: revisiting hypertonic saline as a resuscitation strategy for hemorrhagic shock. , 2000, The Journal of trauma.
[28] C. Cocanour,et al. Tissue hemoglobin O2 saturation during resuscitation of traumatic shock monitored using near infrared spectrometry. , 2000, The Journal of trauma.
[29] E. Moore,et al. Hypertonic saline resuscitation abrogates neutrophil priming by mesenteric lymph. , 2000, The Journal of trauma.
[30] W. Shoemaker,et al. Invasive and non-invasive physiological monitoring of blunt trauma patients in the early period after emergency admission. , 1999, International surgery.
[31] P. Nicotera,et al. Prevention of endotoxin-induced lethality, but not of liver apoptosis in poly(ADP-ribose) polymerase-deficient mice. , 1999, Biochemical and biophysical research communications.
[32] G. Beilman,et al. Near-infrared spectroscopy measurement of regional tissue oxyhemoglobin saturation during hemorrhagic shock. , 1999, Shock.
[33] R. Andriantsitohaina,et al. Resistance to endotoxic shock as a consequence of defective NF‐κB activation in poly (ADP‐ribose) polymerase‐1 deficient mice , 1999, The EMBO journal.
[34] A. Weyland,et al. Comparison of cardiac output assessed by pulse-contour analysis and thermodilution in patients undergoing minimally invasive direct coronary artery bypass grafting. , 1999, Journal of cardiothoracic and vascular anesthesia.
[35] Wanchun Tang,et al. Sublingual capnometry: a new noninvasive measurement for diagnosis and quantitation of severity of circulatory shock. , 1999, Critical care medicine.
[36] H. G. Goovaerts,et al. A meta-analysis of three decades of validating thoracic impedance cardiography. , 1999, Critical care medicine.
[37] M. Fink,et al. Lisofylline ameliorates intestinal mucosal barrier dysfunction caused by ischemia and ischemia/reperfusion. , 1999, Shock.
[38] A. Liebold,et al. Continuous cardiac output measurement: pulse contour analysis vs thermodilution technique in cardiac surgical patients. , 1999, British journal of anaesthesia.
[39] P. Rhee,et al. Controlled resuscitation for uncontrolled hemorrhagic shock. , 1999, The Journal of trauma.
[40] R. Moeckel,et al. Beat-to-beat modulation of heart rate is coupled to coronary perfusion pressure in the isolated heart. , 1999, Journal of applied physiology.
[41] A. Madan,et al. Esophageal Doppler ultrasound monitor versus pulmonary artery catheter in the hemodynamic management of critically ill surgical patients. , 1998, The Journal of trauma.
[42] H Belzberg,et al. Multicenter study of noninvasive monitoring systems as alternatives to invasive monitoring of acutely ill emergency patients. , 1998, Chest.
[43] L. Nelson,et al. Right ventricular end-diastolic volume index as a predictor of preload status in patients on positive end-expiratory pressure. , 1998, Critical care medicine.
[44] Wanchun Tang,et al. Sublingual capnometry for diagnosis and quantitation of circulatory shock. , 1998, American journal of respiratory and critical care medicine.
[45] J. Fell,et al. Evaluation of the Accusport Lactate Analyser. , 1998, International journal of sports medicine.
[46] P. Wang,et al. Resuscitation after uncontrolled venous hemorrhage: Does increased resuscitation volume improve regional perfusion? , 1998, The Journal of trauma.
[47] P. Rhee,et al. Lactated Ringer's solution resuscitation causes neutrophil activation after hemorrhagic shock. , 1998, The Journal of trauma.
[48] L. Nelson,et al. Right Ventricular End-diastolic Volume As A Predictor Of Preload Status In Abdominal Compartment Synorome , 1998 .
[49] J. Meredith,et al. Randomized, prospective comparison of increased preload versus inotropes in the resuscitation of trauma patients: effects on cardiopulmonary function and visceral perfusion. , 1998, The Journal of trauma.
[50] A. Weyland,et al. Assessment of intrathoracic blood volume Thermo-dye dilution technique vs single- thermodilution technique , 1998, Der Anaesthesist.
[51] R. Leach,et al. Lithium dilution cardiac output measurement: a comparison with thermodilution. , 1997, Critical care medicine.
[52] M. Singer,et al. Intraoperative intravascular volume optimisation and length of hospital stay after repair of proximal femoral fracture: randomised controlled trial , 1997, BMJ.
[53] T. Fabian,et al. Efficacy of hypertonic 7.5% saline and 6% dextran-70 in treating trauma: a meta-analysis of controlled clinical studies. , 1997, Surgery.
[54] M. Remberger,et al. Generation of cytokines in red cell concentrates during storage is prevented by prestorage white cell reduction , 1997, Transfusion.
[55] M. Fink. Cytopathic hypoxia in sepsis , 1997, Acta anaesthesiologica Scandinavica. Supplementum.
[56] J. Ghajar,et al. Hypertonic/hyperoncotic saline attenuates microcirculatory disturbances after traumatic brain injury. , 1997, The Journal of trauma.
[57] H. Nielsen,et al. Leucocyte and platelet‐derived bioactive substances in stored blood: effect of prestorage leucocyte filtration , 1997, European journal of haematology.
[58] W. Loomis,et al. Hypertonic saline resuscitation decreases susceptibility to sepsis after hemorrhagic shock. , 1997, The Journal of trauma.
[59] J. Meredith,et al. Cardiac preload, splanchnic perfusion, and their relationship during resuscitation in trauma patients. , 1997, The Journal of trauma.
[60] C. Cairns,et al. Evidence for early supply independent mitochondrial dysfunction in patients developing multiple organ failure after trauma. , 1997, The Journal of trauma.
[61] J. Davis,et al. Effect of immediate fluid resuscitation on the rate, volume, and duration of pulmonary vascular hemorrhage in a sheep model of penetrating thoracic trauma. , 1997, Annals of emergency medicine.
[62] D M Band,et al. The shape of indicator dilution curves used for cardiac output measurement in man. , 1997, The Journal of physiology.
[63] H. Nielsen,et al. Time‐dependent, spontaneous release of white cell‐ and platelet‐derived bioactive substances from stored human blood , 1996, Transfusion.
[64] T. Vary. SEPSIS‐INDUCED ALTERATIONS IN PYRUVATE DEHYDROGENASE COMPLEX ACTIVITY IN RAT SKELETAL MUSCLE: EFFECTS ON PLASMA LACTATE , 1996, Shock.
[65] R. Ivatury,et al. A prospective randomized study of end points of resuscitation after major trauma: global oxygen transport indices versus organ-specific gastric mucosal pH. , 1996, Journal of the American College of Surgeons.
[66] T G Buchman,et al. Uncoupling of biological oscillators: a complementary hypothesis concerning the pathogenesis of multiple organ dysfunction syndrome. , 1996, Critical care medicine.
[67] L. Nelson,et al. Preload assessment in trauma patients during large-volume shock resuscitation. , 1996, Archives of surgery.
[68] R. Radi,et al. Differential inhibitory action of nitric oxide and peroxynitrite on mitochondrial electron transport. , 1996, Archives of biochemistry and biophysics.
[69] D. Cook,et al. Maximizing oxygen delivery in critically ill patients: a methodologic appraisal of the evidence. , 1996, Critical care medicine.
[70] K. Utsumi,et al. Oxygen-dependent regulation of mitochondrial energy metabolism by nitric oxide. , 1995, Archives of biochemistry and biophysics.
[71] W. Shoemaker,et al. Prospective, randomized trial of survivor values of cardiac index, oxygen delivery, and oxygen consumption as resuscitation endpoints in severe trauma. , 1995, The Journal of trauma.
[72] P E Pepe,et al. Immediate versus delayed fluid resuscitation for hypotensive patients with penetrating torso injuries. , 1994, The New England journal of medicine.
[73] T. Scalea,et al. Resuscitation of multiple trauma and head injury: Role of crystalloid fluids and inotropes , 1994, Critical care medicine.
[74] L. Nelson,et al. Gastric tonometry supplements information provided by systemic indicators of oxygen transport. , 1994, The Journal of trauma.
[75] C. Piantadosi,et al. Altered mitochondrial redox responses in gram negative septic shock in primates. , 1994, Circulatory shock.
[76] R. Goris,et al. Gastric tonometry in multiple trauma patients. , 1994, The Journal of trauma.
[77] R. Radi,et al. Inhibition of mitochondrial electron transport by peroxynitrite. , 1994, Archives of biochemistry and biophysics.
[78] K. Maekawa,et al. Relationship between pressure-rate product and myocardial oxygen consumption of normal and hypertrophic right ventricles in open-chest dogs. , 1993, Japanese circulation journal.
[79] S. Stern,et al. Effect of blood pressure on hemorrhage volume and survival in a near-fatal hemorrhage model incorporating a vascular injury. , 1993, Annals of emergency medicine.
[80] W. Shoemaker,et al. Hemodynamic and oxygen transport monitoring to titrate therapy in septic shock. , 1993, New horizons.
[81] M Hashmonai,et al. ["Controlled" resuscitation for "uncontrolled" hemorrhagic shock]. , 1993, Harefuah.
[82] J. Morris,et al. Base deficit stratifies mortality and determines therapy. , 1992, The Journal of trauma.
[83] D H Singer,et al. Heart Rate Variability , 1992 .
[84] R. Wilson,et al. End-diastolic volume. A better indicator of preload in the critically ill. , 1992, Archives of surgery.
[85] W. Shoemaker,et al. Role of oxygen debt in the development of organ failure sepsis, and death in high-risk surgical patients. , 1992, Chest.
[86] D. Schuster,et al. Improved outcome based on fluid management in critically ill patients requiring pulmonary artery catheterization. , 1992, The American review of respiratory disease.
[87] E. Moore,et al. Incommensurate oxygen consumption in response to maximal oxygen availability predicts postinjury multiple organ failure. , 1991, The Journal of trauma.
[88] T. Kowalenko,et al. Improved outcome with hypotensive resuscitation of uncontrolled hemorrhagic shock in a swine model. , 1991, The Journal of trauma.
[89] C. Wade,et al. The detrimental effects of intravenous crystalloid after aortotomy in swine. , 1991, Surgery.
[90] C. Wade,et al. Hemodynamic response to abdominal aortotomy in the anesthetized swine. , 1989, Circulatory shock.
[91] E. Bennett,et al. Continuous hemodynamic monitoring by esophageal Doppler. , 1989, Critical care medicine.
[92] W. Shoemaker,et al. Prospective trial of supranormal values of survivors as therapeutic goals in high-risk surgical patients. , 1988, Chest.
[93] W. Shoemaker,et al. Tissue oxygen debt as a determinant of lethal and nonlethal postoperative organ failure. , 1988, Critical care medicine.
[94] S. Shackford,et al. Base deficit as a guide to volume resuscitation. , 1988, The Journal of trauma.
[95] J P Smith,et al. Prehospital stabilization of critically injured patients: a failed concept. , 1985, The Journal of trauma.
[96] D. Trunkey,et al. Is ALS necessary for pre-hospital trauma care? , 1984, The Journal of trauma.
[97] I. Velasco,et al. Hyperosmotic NaCl and severe hemorrhagic shock. , 1980, The American journal of physiology.
[98] R. Gosling,et al. Non-surgical Assessment of Cardiac Function , 1971, Nature.
[99] F. Bashour,et al. Splanchnic circulation in shock. , 1967, Gastroenterology.
[100] J. Siegel,et al. HEMODYNAMIC STUDIES IN PATIENTS WITH IMPLANTED CARDIAC PACEMAKERS. , 1964, The New England journal of medicine.
[101] G. Shaftan,et al. THE EFFECT OF TRANSFUSION AND OF CERTAIN HEMODYNAMIC FACTORS ON THE SPONTANEOUS CONTROL OF ARTERIAL HEMORRHAGE. , 1964, The Journal of cardiovascular surgery.
[102] M. Weil,et al. EXCESS LACTATE: AN INDEX OF REVERSIBILITY OF SHOCK IN HUMAN PATIENTS. , 1964, Science.
[103] Max H. Weil,et al. Excess Lactate: An Index of Reversibility of Shock in Human Patients , 1964, Science.