Donor characteristics do not influence transfusion-related acute lung injury incidence in a secondary analysis of two case-control studies.
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[1] Richard J Cook,et al. Effect of Short-Term vs. Long-Term Blood Storage on Mortality after Transfusion. , 2016, The New England journal of medicine.
[2] M. Gladwin,et al. Testosterone‐dependent sex differences in red blood cell hemolysis in storage, stress, and disease , 2016, Transfusion.
[3] I. Papassideri,et al. Donor‐variation effect on red blood cell storage lesion: A close relationship emerges , 2016, Proteomics. Clinical applications.
[4] M. Gladwin,et al. Assessing the influence of component processing and donor characteristics on quality of red cell concentrates using quality control data , 2016, Vox sanguinis.
[5] R. Lutter,et al. Transfusion of 35-Day Stored RBCs in the Presence of Endotoxemia Does Not Result in Lung Injury in Humans* , 2016, Critical care medicine.
[6] I. Papassideri,et al. Donor variation effect on red blood cell storage lesion: a multivariable, yet consistent, story , 2016, Transfusion.
[7] Catherine Quantin,et al. Effect of storage time and donor sex of transfused red blood cells on 1‐year survival in patients undergoing cardiac surgery: an observational study , 2016, Transfusion.
[8] H. Howie,et al. Metabolic pathways that correlate with post-transfusion circulation of stored murine red blood cells , 2016, Haematologica.
[9] A. Forster,et al. Effect of Blood Donor Characteristics on Transfusion Outcomes: A Systematic Review and Meta-Analysis. , 2016, Transfusion medicine reviews.
[10] A. Vlaar,et al. Antibody‐mediated transfusion‐related acute lung injury; from discovery to prevention , 2015, British journal of haematology.
[11] S. Assmann,et al. Effects of red-cell storage duration on patients undergoing cardiac surgery. , 2015, The New England journal of medicine.
[12] Jeannie Callum,et al. Age of transfused blood in critically ill adults. , 2015, The New England journal of medicine.
[13] M. Murad,et al. Male-Predominant Plasma Transfusion Strategy for Preventing Transfusion-Related Acute Lung Injury: A Systematic Review , 2015, Critical care medicine.
[14] A. D’Alessandro,et al. An update on red blood cell storage lesions, as gleaned through biochemistry and omics technologies , 2015, Transfusion.
[15] N. Juffermans,et al. Pathogenesis of non-antibody mediated transfusion-related acute lung injury from bench to bedside. , 2015, Blood reviews.
[16] M. Scherrer-Crosbie,et al. Autologous transfusion of stored red blood cells increases pulmonary artery pressure. , 2014, American journal of respiratory and critical care medicine.
[17] G. Buettner,et al. The concentration of glutathione in human erythrocytes is a heritable trait. , 2013, Free radical biology & medicine.
[18] N. Juffermans,et al. Transfusion-related acute lung injury: a clinical review , 2013, The Lancet.
[19] Massimo Franchini,et al. ABO blood group: old dogma, new perspectives , 2013, Clinical chemistry and laboratory medicine.
[20] A. Powers,et al. Reducing transfusion-related acute lung injury risk: evidence for and approaches to transfusion-related acute lung injury mitigation. , 2012, Transfusion medicine reviews.
[21] R. Weiskopf,et al. Fresh and Stored Red Blood Cell Transfusion Equivalently Induce Subclinical Pulmonary Gas Exchange Deficit in Normal Humans , 2012, Anesthesia and analgesia.
[22] E. Briët,et al. Mortality after transfusions, relation to donor sex , 2011, Vox sanguinis.
[23] J. Korevaar,et al. The incidence, risk factors, and outcome of transfusion-related acute lung injury in a cohort of cardiac surgery patients: a prospective nested case-control study. , 2011, Blood.
[24] H. Vrielink,et al. Prevalence of leucocyte antibodies in the Dutch donor population , 2011, Vox sanguinis.
[25] J. Binnekade,et al. Risk factors and outcome of transfusion-related acute lung injury in the critically ill: A nested case–control study* , 2010, Critical care medicine.
[26] J. Kurtis,et al. Stored red blood cell supernatant facilitates thrombin generation , 2009, Transfusion.
[27] G. Johansson,et al. Carbon monoxide concentration in donated blood: relation to cigarette smoking and other sources , 2009, Transfusion.
[28] U. Sachs,et al. The pathogenesis of transfusion‐related acute lung injury (TRALI) , 2007, British journal of haematology.
[29] S. Kleinman. A perspective on transfusion‐related acute lung injury two years after the Canadian Consensus Conference , 2006, Transfusion.
[30] J. Bux. Antibody‐mediated transfusion‐related acute lung injury , 2006, Transfusion.
[31] Edward Abraham,et al. Transfusion-related acute lung injury: definition and review. , 2005, Critical care medicine.
[32] J. Freedman,et al. Proceedings of a consensus conference: towards an understanding of TRALI. , 2005, Transfusion medicine reviews.
[33] Robertson Davenport,et al. Toward an understanding of transfusion‐related acute lung injury: statement of a consensus panel , 2004, Transfusion.
[34] M. Nakagawa,et al. Recipients of blood from a donor with multiple HLA antibodies: a lookback study of transfusion‐related acute lung injury , 2004, Transfusion.
[35] C. Chapman,et al. Transfusion‐related acute lung injury caused by two donors with anti‐human leucocyte antigen class II antibodies: a look‐back investigation , 2004, Transfusion medicine.