Use of a high platelet-to-RBC ratio of 2:1 is more effective in correcting trauma-induced coagulopathy than a ratio of 1:1 in a rat multiple trauma transfusion model
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N. Juffermans | J. Roelofs | M. Hollmann | M. Hollmann | J. Goslings | D. J. Kleinveld | M. A. Maas | Daan P van den Brink | M. Wirtz | Daan P. van den Brink
[1] R. Tompkins,et al. Platelet transfusion increases risk for acute respiratory distress syndrome in non-massively transfused blunt trauma patients , 2019, European Journal of Trauma and Emergency Surgery.
[2] P. Spinella,et al. Washing or filtering of blood products does not improve outcome in a rat model of trauma and multiple transfusion , 2018, Transfusion.
[3] K. Fushimi,et al. Outcomes of patients receiving a massive transfusion for major trauma , 2018, The British journal of surgery.
[4] S. Laradi,et al. Platelet and TRALI: From blood component to organism. , 2018, Transfusion clinique et biologique : journal de la Societe francaise de transfusion sanguine.
[5] Huan Yang,et al. High-mobility group box 1 protein (HMGB1) operates as an alarmin outside as well as inside cells. , 2018, Seminars in immunology.
[6] T. Orfeo,et al. Reference ranges for rotational thromboelastometry in male Sprague Dawley rats , 2017, Thrombosis Journal.
[7] N. Juffermans,et al. Endotoxemia Results in Trapping of Transfused Red Blood Cells in Lungs with Associated Lung Injury. , 2017, Shock.
[8] J. Lord,et al. Endotheliopathy of Trauma is an on-Scene Phenomenon, and is Associated with Multiple Organ Dysfunction Syndrome: A Prospective Observational Study , 2017, Shock.
[9] E. Moore,et al. Thrombelastography indicates limitations of animal models of trauma-induced coagulopathy. , 2017, The Journal of surgical research.
[10] J. V. van Buul,et al. The role of endothelium in the onset of antibody-mediated TRALI. , 2017, Blood reviews.
[11] N. Juffermans,et al. Possible TRALI is a real entity , 2017, Transfusion.
[12] D. Pennington,et al. Signatures of inflammation and impending multiple organ dysfunction in the hyperacute phase of trauma: A prospective cohort study , 2017, PLoS medicine.
[13] R. Peralta,et al. Early high ratio platelet transfusion in trauma resuscitation and its outcomes , 2016, International journal of critical illness and injury science.
[14] T. Fabian,et al. A prospective study of platelet function in trauma patients , 2016, The journal of trauma and acute care surgery.
[15] M. Dubick,et al. Trauma-Related Acute Lung Injury Develops Rapidly Irrespective of Resuscitation Strategy in the Rat , 2016, Shock.
[16] G. Dobson,et al. Differential contributions of platelets and fibrinogen to early coagulopathy in a rat model of hemorrhagic shock. , 2016, Thrombosis research.
[17] S. Stanworth,et al. Mortality from trauma haemorrhage and opportunities for improvement in transfusion practice , 2016, The British journal of surgery.
[18] T. Fabian,et al. A prospective study of platelet function in trauma patients , 2016, The journal of trauma and acute care surgery.
[19] Simon C Watkins,et al. Platelet-derived HMGB1 is a critical mediator of thrombosis. , 2015, The Journal of clinical investigation.
[20] T. Pritts,et al. All the bang without the bucks: Defining essential point-of-care testing for traumatic coagulopathy , 2015, The journal of trauma and acute care surgery.
[21] S. Stanworth,et al. Detection of acute traumatic coagulopathy and massive transfusion requirements by means of rotational thromboelastometry: an international prospective validation study , 2015, Critical Care.
[22] David B Hoyt,et al. Transfusion of plasma, platelets, and red blood cells in a 1:1:1 vs a 1:1:2 ratio and mortality in patients with severe trauma: the PROPPR randomized clinical trial. , 2015, JAMA.
[23] Weng-Lang Yang,et al. Blocking Cold-Inducible RNA-Binding Protein Protects Liver From Ischemia-Reperfusion Injury , 2015, Shock.
[24] M. Choudhry,et al. Alcohol Potentiates Postburn Remote Organ Damage Through Shifts in Fluid Compartments Mediated by Bradykinin , 2015, Shock.
[25] D. M. Dohan Ehrenfest,et al. Classification of platelet concentrates (Platelet-Rich Plasma-PRP, Platelet-Rich Fibrin-PRF) for topical and infiltrative use in orthopedic and sports medicine: current consensus, clinical implications and perspectives. , 2014, Muscles, ligaments and tendons journal.
[26] Anirban Banerjee,et al. Temporal trends of postinjury multiple-organ failure: Still resource intensive, morbid, and lethal , 2014, The journal of trauma and acute care surgery.
[27] M. Maegele,et al. The Acute Coagulopathy of Trauma: Mechanisms and Tools for Risk Stratification , 2012, Shock.
[28] A. Peitzman,et al. Debunking the survival bias myth: Characterization of mortality during the initial 24 hours for patients requiring massive transfusion , 2012, The journal of trauma and acute care surgery.
[29] M. Cohen,et al. Characterization of platelet dysfunction after trauma , 2012, The journal of trauma and acute care surgery.
[30] P. Tuinman,et al. Coagulopathy as a therapeutic target for TRALI: rationale and possible sites of action. , 2012, Current pharmaceutical design.
[31] A. Peitzman,et al. Increased platelet:RBC ratios are associated with improved survival after massive transfusion. , 2011, The Journal of trauma.
[32] J. Dragoo,et al. Comparison of Growth Factor and Platelet Concentration From Commercial Platelet-Rich Plasma Separation Systems , 2011, The American journal of sports medicine.
[33] H. van Lenthe,et al. Supernatant of stored platelets causes lung inflammation and coagulopathy in a novel in vivo transfusion model. , 2010, Blood.
[34] R. Nieuwland,et al. Supernatant of Aged Erythrocytes Causes Lung Inflammation and Coagulopathy in a “Two-Hit” In Vivo Syngeneic Transfusion Model , 2010, Anesthesiology.
[35] M. Kersten,et al. The divergent clinical presentations of transfusion-related acute lung injury illustrated by two case reports. , 2010, Medical science monitor : international medical journal of experimental and clinical research.
[36] Y. Vodovotz,et al. Hemorrhagic shock augments lung endothelial cell activation: role of temporal alterations of TLR4 and TLR2. , 2009, American journal of physiology. Regulatory, integrative and comparative physiology.
[37] Ru-Ping Lee,et al. Fluvastatin attenuates severe hemorrhagic shock-induced organ damage in rats. , 2009, Resuscitation.
[38] J. Michalek,et al. Increased Plasma and Platelet to Red Blood Cell Ratios Improves Outcome in 466 Massively Transfused Civilian Trauma Patients , 2008, Annals of surgery.
[39] Ernest E Moore,et al. The next generation in shock resuscitation , 2004, The Lancet.
[40] Mauricio Lynn,et al. Early coagulopathy predicts mortality in trauma. , 2003, The Journal of trauma.
[41] L. Traverso,et al. Fluid resuscitation after an otherwise fatal hemorrhage: I. Crystalloid solutions. , 1986, The Journal of trauma.
[42] D. Slater,et al. The origin of platelet count and volume. , 1984, Clinical physics and physiological measurement : an official journal of the Hospital Physicists' Association, Deutsche Gesellschaft fur Medizinische Physik and the European Federation of Organisations for Medical Physics.
[43] N. Juffermans,et al. Endotoxemia Results in Trapping of Transfused Red Blood Cells in Lungs with Associated Lung Injury. , 2017, Shock.
[44] Z. Ba,et al. Differential alterations in plasma IL-6 and TNF levels after trauma and hemorrhage. , 1991, The American journal of physiology.
[45] L. Traverso,et al. Fluid resuscitation after an otherwise fatal hemorrhage: II. Colloid solutions. , 1986, The Journal of trauma.