References: Crystalloids or colloids? - Veterinary Medicine
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References: Crystalloids or colloids?


1. Wilcox CS. Regulation of renal blood flow by plasma chloride. J Clin Invest 1983;71:726-735.
2. Handy JM, Soni N. Physiological effects of hyperchloraemia and acidosis. Br J Anaesth 2008;101:141-150.
3. Kellum JA: Saline-induced hyperchloremic metabolic acidosis. Crit Care Med 2002;30:259261.
4. Doherty M, Buggy DJ. Intraoperative fluids: how much is too much? Br J of Anaesth  2012;109:69-79.
5. Hofmann-Kiefer KF, Chappell D, Kammerer T, et al. Influence of an acetate- and a lactate-based balanced infusion solution on acid base physiology and hemodynamics : an observational pilot study. Eur J Med Res 2012;17:21-33.
6. Morgan TJ, Venkatesh B: Designing ‘balanced’ crystalloids. Crit Care Resusc 2003;5:284-291.
7. Kehlet H. Goal-directed perioperative fluid management. Anesthesiology 2009;110:463-455.
8. Muir WW, Kijtawornrat A, Ueyama Y, et al. Effects of intravenous administration of lactated Ringer's solution on hematologic, serum biochemical, rheological, hemodynamic, and renal measurements in healthy isoflurane-anesthetized dogs. J Am Vet Med Assoc 2011;239:630-637.
9. Homann-Kiefer KF, Chappell D, Kammerer T, et al. Influence of an acetate-and a lactate-based balanced infusion solution on acid base physiology and hemodynamics: an observational pilot study. Eur J Med Res 2012;17:21-29.
10. Vázquez BY, Martini J, Tsai AG, et al. The variability of blood pressure due to small changes of hematocrit. Am J Physiol Heart Circ Physiol 2010;299:H863–H867.
11. Valverde A, Gianotti G, Rioja-Garcia E, et al. Effects of high-volume, rapid-fluid therapy on cardiovascular function and hematological values during isoflurane-induced hypotension in healthy dogs. Can J Vet Res 2012;76:99-108.
12. Bulger EM, Hoyt DB. Hypertonic resuscitation after severe injury: is it of benefit? Adv Surg 2012;46:73-85.
13. Santry HP, Alam HB. Fluid resuscitation: Past, present, and the future. Shock 2010;33:229-241.
14. Hiltebrand LB, Kimberger O, Arnberger M, et al. Crystalloids versus colloids for goal-directed fluid therapy in major surgery. Crit Care 2009;13:R40.
15. McIlroy ER, Kharasch ED. Acute intravascular volume expansion with rapidly administered crystalloid or colloid in the setting of moderate hypovolemia. Anesth Analg 2003;96:1572-1577.
16. Aarnes TK, Bednarski RM, Lerche P, et al. Effect of intravenous administration of lactated Ringer’s solution or hetastarch for the treatment of isoflurane-induced hypotension in dogs. Am J Vet Med 2009;70:1345-1353.
17. Villela NR, Vazques BYS, Intaglietta. Microcirculatory effect of intravenous fluids in critical illness: plasma expansion beyond crystalloids and colloids. Curr Opin Anaesthesiol 2009;22:163-167.
18. Moore LE, Garvey MS. The effect of hetastarch on serum colloid oncotic pressure in hypoalbuminemic dogs. J Vet Intern Med 1996;10(5):300-303.
19. Chan DL, Rozanski EA, Freeman LS, et al. Colloid osmotic pressure in health and disease. Compend Contin Educ Pract Vet 2001;23:886-904.
20. Westphal M, James MFM, Kozek-Langenecker S, et al. Hydroxyethyl starches. Different products-different effects. Anesthesiology 2009;111:187-202.
21. Jacob M, Bruegger D, Rehm M, et al. The endothelial glycocalyx affords compatibility of Starling’s principle and high cardiac interstitial albumin levels. Cardiovasc Res 2007:73:575-586.
22. Hoffman JN, Vollmar B, Laschke MW, et al. Hydroxyethyl starch (130 kD), but not crystalloid volume support, improves microcirculation during normotensive endotoxemia. Anesthesiology 2002;97:460-470.
23. Gattas DJ, Dan A, Myburgh J, et al. Fluid resuscitation with 6% hydroxyethyl starch (130/0.4) in acutely ill patients: An updated systemic review and meta-analysis. Anesth Analg 2012;114:159-169.
24. Jungheinrich C, Scharpf R, Wargenau M, et al. The pharmacokinetics and tolerability of an intravenous infusion of the new hydroxyethyl starch 130/0.4 (6%, 500 ml) in mild-to-severe renal impairment. Anesth Analg 2002;95:544-551.
25. Van der Linder P. The effects of colloid solutions on hemostasis. Can J Anesth 2006;53:S30-S39.
26. Cada DJ, Baker DE. Hydroxyethyl starch 130/0.4. Hospital Pharmacy 2008;43:396-408.
27. Bacek LM, Martin LG, Spangler EA, et al. Determination of the in vitro effects of two forms of hydroxyethyl starch solutions on thromboelastography and coagulation parameters in healthy dogs (abst.). J Vet Emerg Crit Care 2011;21:S2.
28. Pape A, Kutschker S, Kertscho H, et al. The choice of intravenous fluid influences the tolerance of acute normovolemic anemia in anesthetized domestic pigs. Crit Care 2012;16:R69.
29. Lang K, Boldt J, Suttner S, et al. Colloids versus crystalloids and tissue oxygen tension in patients undergoing major abdominal surgery. Anesth Analg  2001;93(2):405-409.
30. Prowle JR, Echeverri JE, Ligabo V, et al. Fluid balance and acute kidney injury. Nat Rev Nephrol 2010;6:107-115.
31. Hartog CS, Bauer M, Reinhart K. The efficacy and safety of colloid resuscitation in critically ill. Anesth Analg 2011;112:156-164.
32. Muller L, Jaber S, Molinari N, et al. Fluid management and risk factors for renal dysfunction in patients with severe sepsis and/or septic shock. Crit Care 2012;16(1):R34.
33. Reinhart K, Perner A, Sprung CL, et al. Consensus statement of the ESICM task force on colloid volume therapy in critically ill patients. Intensive Care Med 2012;38:368-383.

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