The association of lowest hematocrit during cardiopulmonary bypass with acute renal injury after coronary artery bypass surgery.
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M. Swaminathan | M. Newman | M. Stafford-Smith | Peter K. Smith | P. Conlon | B. Phillips-bute | Peter K. Smith
[1] M. Antunes,et al. Renal dysfunction after myocardial revascularization. , 2004, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.
[2] R. Marfella,et al. Reduction of Inflammatory Cytokine Concentrations and Improvement of Endothelial Functions in Obese Women After Weight Loss Over One Year , 2002, Circulation.
[3] J. Pepper,et al. Changes in aortic rotational flow during cardiopulmonary bypass studied by transesophageal echocardiography and magnetic resonance velocity imaging: a potential mechanism for atheroembolism during cardiopulmonary bypass , 2001, Heart and Vessels.
[4] M. Swaminathan,et al. Report of a substudy on warm versus cold cardiopulmonary bypass: changes in creatinine clearance. , 2001, The Annals of thoracic surgery.
[5] R. Groom,et al. Lowest hematocrit on bypass and adverse outcomes associated with coronary artery bypass grafting. Northern New England Cardiovascular Disease Study Group. , 2001, The Annals of thoracic surgery.
[6] T. Evans,et al. Acute renal failure following cardiopulmonary bypass: a changing picture , 2000, Intensive Care Medicine.
[7] M. Newman,et al. Intraoperative physiologic variables and outcome in cardiac surgery: Part I. In-hospital mortality. , 2000, Annals of Thoracic Surgery.
[8] C. Mullany,et al. Cerebral response to hemodilution during hypothermic cardiopulmonary bypass in adults. , 1999, Anesthesia and analgesia.
[9] W. White,et al. Acute renal failure following cardiac surgery. , 1999, Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association.
[10] T. Orszulak,et al. Minimum hematocrit at differing cardiopulmonary bypass temperatures in dogs. , 1998, Circulation.
[11] P. T. Phang,et al. Effect of crystalloid administration on oxygen extraction in endotoxemic pigs. , 1998, Journal of applied physiology.
[12] T. Orszulak,et al. Hemodilution and whole body oxygen balance during normothermic cardiopulmonary bypass in dogs. , 1998, The Journal of thoracic and cardiovascular surgery.
[13] D. Mangano,et al. Renal Dysfunction after Myocardial Revascularization: Risk Factors, Adverse Outcomes, and Hospital Resource Utilization , 1998, Annals of Internal Medicine.
[14] M L Lesser,et al. Impact of minimum hematocrit during cardiopulmonary bypass on mortality in patients undergoing coronary artery surgery. , 1997, Circulation.
[15] W. White,et al. Improvement of outcomes after coronary artery bypass. , 1997, The Journal of thoracic and cardiovascular surgery.
[16] E. Cook,et al. Preoperative renal risk stratification. , 1997, Circulation.
[17] J. Hollenberg,et al. Improvement of outcomes after coronary artery bypass. A randomized trial comparing intraoperative high versus low mean arterial pressure. , 1995, The Journal of thoracic and cardiovascular surgery.
[18] J. Whitworth,et al. Acute renal failure following cardiac surgery: incidence, outcomes and risk factors. , 1995, Australian and New Zealand journal of medicine.
[19] T. Hall,et al. The pathophysiology of cardiopulmonary bypass. The risks and benefits of hemodilution. , 1995, Chest.
[20] M. Pavesi,et al. Risk factors for renal dysfunction after coronary surgery: the role of cardiopulmonary bypass technique , 1994, Perfusion.
[21] J. Urzúa,et al. Renal function and cardiopulmonary bypass: effect of perfusion pressure. , 1992, Journal of cardiothoracic and vascular anesthesia.
[22] O. Källskog,et al. Red cell trapping and postischemic renal blood flow. Differences between the cortex, outer and inner medulla. , 1991, Kidney international.
[23] P. J. Friedman. Serum creatinine: an independent predictor of survival after stroke , 1991, Journal of internal medicine.
[24] O. Källskog,et al. Nephron function in the early phase of ischemic renal failure. Significance of erythrocyte trapping. , 1990, Kidney international.
[25] M. Blaufox,et al. Prognostic value of serum creatinine and effect of treatment of hypertension on renal function. Results from the hypertension detection and follow-up program. The Hypertension Detection and Follow-up Program Cooperative Group. , 1989, Hypertension.
[26] J. Kao,et al. Clinical significance of urinary N-acetyl-beta-D-glucosaminidase and alanine aminopeptidase. , 1989, Taiwan yi xue hui za zhi. Journal of the Formosan Medical Association.
[27] E. Jennische,et al. Lack of casual relationship between medullary blood congestion and tubular necrosis in postischaemic kidney damage. , 1987, Acta physiologica Scandinavica.
[28] J. Corson,et al. Effects of isovolemic hemodilution on abdominal aortic aneurysmectomy in high risk patients. , 1986, Annals of Vascular Surgery.
[29] H. Reines,et al. Reversal of acute renal failure using hemodilution with hydroxyethyl starch. , 1983, The Journal of trauma.
[30] D. Baldwin,et al. Renal failure after open heart surgery. , 1976, Annals of internal medicine.
[31] W. Austen,et al. Renal dysfunction following open‐heart operations , 1974, Archives of surgery.
[32] D. Fliser,et al. Serum cystatin C concentration as a marker of renal dysfunction in the elderly. , 2001, American journal of kidney diseases : the official journal of the National Kidney Foundation.
[33] P. Persson,et al. Oxygen and renal hemodynamics in the conscious rat. , 2000, Journal of the American Society of Nephrology : JASN.
[34] T. Kanda,et al. N-acetyl-beta-D-glucosaminidase is not a predictor, but an indicator of kidney injury in patients with cardiac surgery. , 1999, Journal of medicine.
[35] M. Brezis,et al. Cellular mechanisms of acute ischemic injury in the kidney. , 1993, Annual review of medicine.
[36] C. Mackenzie,et al. A new method of classifying prognostic comorbidity in longitudinal studies: development and validation. , 1987, Journal of chronic diseases.
[37] Cockcroft Dw,et al. Prediction of Creatinine Clearance from Serum Creatinine , 1976 .