LaMuraglia et al., “The reduction of the allogenic transfusion requirement in aortic surgery with a hemoglobin-based solution”, J. Vascular Surgery 31 (2) : 299-308 (Feb. 2000).* |
Slanetz et al., “Hemoglobin blood substitutes in extended peroperative autologous blood donation” An experimental study, Surgery 115 (2) : 246-54(1994).* |
Chang, T.M.S., “The Use of Modified Hemoglobin as an Oxygen Carrying Blood Substitute,” Transfusion Medicine Reviews, 3 (3) :213-218 (1989). |
Homer, L.D. et al., “Oxygen Gradients between Red Blood Cells in the Microcirculation1,” Hypoxia Between Red Cells, pp. 308-323 (1981). |
Lovric, V.A., “Alterations in Blood Components during Storage and their Clinical Significance,” Anaesthesia and Intensive Care, 12 (3) :246-251 (1984). |
Marik, P.E. et al., “Effect of Stored-Blood Transfusion on Oxygen Delivery in Patients With Sepsis,” JAMA, 269 (23) :3024-3029 (1993). |
Masouredis, S.P., “Preservation and clinical use of erythrocytes and whole blood,” In Hematology, Williams et al., eds. (NY: McGraw Hill), pp. 1529-1549 (1983). |
Oudemans-van Straaten, H.M. et al., “Analysis of P50 and oxygen transport in patients after cardiac surgery,” Intensive Care Med., 22:781-789 (1996). |
Page, T.C. et al., “Oxygen Transport by Erythrocyte/Hemoglobin Solution Mixtures in an in Vitro Capillary as a Model of Hemoglobin-Based Oxygen Carrier Performance,” Microvascular Research, 55:54-64 (1998). |
Page, T.C. et al., “Prediction of Microcirculatory Oxygen Transport by Erythrocyte/Hemoglobin Solution Mixtures,” Microvascular Research, 56:113-126 (1998). |
Page, T.C. et al., “Experimental and Mathematical Simulation of Oxygen Transport by Hemoglobin-based Blood Substitute,” In Blood Substitutes—Present and Future Perspectives, E. Tsuchida, ed. pp. 135-145 (1998). |
Page, T.C. et al., “Oxygen Transport In 10 μm Artificial Capillaries,” In Oxygen Transport to Tissue XXI, Eke et al., eds. (NY: Kluwer Academic/Plenum Publishers), pp. 715-721 (1999). |
Page, T.C. et al., “Experimental and Theoretical Simulation of Oxygen Transport with Erythrocytes and Extracellular Hemoglobin-Based Materials,” Presented at ISBS VI, Montreal, Quebec, Canada (Aug., 1996). |
Page, T.C. et al., “Experimental and Theoretical Simulation of Oxygen Transport with Erythrocytes and Extracellular Hemoglobin Solutions,” Presented at Biomedical Engineering Society, Fall Meeting, Boston, Massachusetts (1995). |
Page, T.C. et al., “Experimental Determination of Intraluminal Oxygen Transport by Hemoglobin Based Oxygen Transport by Hemoglobin Based Oxygen Carriers In 10 μm Capillaries,” Presented at ISOTT, Budapest, Hungry (1998). |
Page, T.C. et al., “Experimental Simulation of Oxygen Transport in 10 μm Capillaries,” Presented at ISOTT, Milwaukee (1997). |
Page, T.C. et al., “In Vitro model of Microcirculatory Oxygen Transport,” Presented at the BMES, Fall Meeting, Tempe, Arizona (1994). |
Parris, W.C.W. et al., “The effect of intentional hemodilution on P50,” J. Cardiovasc. Surg., 29:560-562 (1988). |
Standl, T. et al., “Hemodynamics and Oxygen Transport During Complete Isovolemic Hemodilution with a New Ultrapurified Poly-Merized Bovine Hemoglobin Solution in a Dog Model,” Paper presented at the Annual Meeting of the American Society of Anesthesiologists in Washington, (1993). |
Sugerman, H.J. et al., “The Basis of Defective Oxygen Delivery From Stored Blood,” Surgery, Gynecology & Obstetrics, pp. 733-741 (1970). |
Tsai, A.G. et al., “Local Tissue Oxygenation during Constant Red Blood Cell Flux: A Discrete Source Analysis of Velocity and Hematocrit Changes1,” Microvascular Research, 37:308-322 (1989). |
Uehira, A., et al., “Oxygen affinity measurement of preserved blood,” Vox Sanguinis, 70(suppl. 2), (1996). |
Valeri, C.R. et al., “Physiologic Effects of Transfusing Red Blood Cells with High Low Affinity for Oxygen to Passively Hyperventalated Anemic Baboons,” Ann. Surg., 181(1) :106-113 (1974). |
Valeri, C.R. et al., “Therapeutic Effectiveness and Safety of Outdated Human Red Blood Cells Rejuvenated to Improve Oxygen Transport Function, Frozen for About 1.5 Years at 80 C., Washed, and Stored at 4 C. for 24 Hours Prior to Rapid Infusion,” Transfusion, 20(3):263-276 (1980). |
Wells, R.M.G. et al., “Changes of Blood Oxygen Affinity in Different CPD Solutions during Liquid Storage,” Transfusion, 21(6):709-714 (1981). |
Standl, T. et al., “Bovine haemoglobin is more potent than autologous red blood cells in restoring muscular tissue oxygenation after profound isovolaemic haemodilution in dogs,” Can J Anaesth 43(7): 714-23 (1996). |