BACKGROUND: Small-volume resuscitation using hypertonic saline/hydroxyethyl starch 200/0.62 (HS-HES) has been shown to be an effective alternative to the administration of crystalloids or colloids in trauma patients. All i.v. fluids cause dose-related dilutional coagulopathy and show intrinsic effects on the hemostatic system, but only few data refer to functional consequences after small-volume resuscitation. METHODS: Using thrombelastometry (ROTEM), we studied 30 pigs (weighing 35-45 kg) after withdrawal of 60% of blood volume [1484 mL (1369-1624 mL)] and receiving 4 mL/kg HS-HES for compensation of blood loss or 4% gelatin or 6% HES 130/0.4 in a 1:1 ratio to lost blood volume. To compare the ROTEM variables (coagulation time, clot formation time, alpha angle, clot firmness, and fibrinogen polymerization) with bleeding tendency, a hepatic incision was made and blood loss was measured. RESULTS: Median (25th, 75th percentile) fibrinogen polymerization was significantly higher after HS-HES infusion [11 mm (10, 11), P = 0.0034] when compared with administration of 4% gelatin [4.5 mm (3.0, 5.8)] or HES 130/0.4 [3.5 mm (2.3, 4.0)]. Median blood loss after liver incision was 725 mL (900, 375) after HS-HES, 1625 mL (1275, 1950) after 4% gelatin, and 1600 mL (1500, 1800) after 6% HES 130/0.4 (P = 0.004). Hemodynamic stabilization was traceable in all groups but showed differences regarding filling pressures. CONCLUSIONS: Resuscitation from hemorrhagic shock with HS-HES 200/0.62 results in less impairment of clot formation when compared with compensation of blood loss by administering 6% HES 130/0.4 or 4% gelatin.
BACKGROUND: Small-volume resuscitation using hypertonic saline/hydroxyethyl starch 200/0.62 (HS-HES) has been shown to be an effective alternative to the administration of crystalloids or colloids in traumapatients. All i.v. fluids cause dose-related dilutional coagulopathy and show intrinsic effects on the hemostatic system, but only few data refer to functional consequences after small-volume resuscitation. METHODS: Using thrombelastometry (ROTEM), we studied 30 pigs (weighing 35-45 kg) after withdrawal of 60% of blood volume [1484 mL (1369-1624 mL)] and receiving 4 mL/kg HS-HES for compensation of blood loss or 4% gelatin or 6% HES 130/0.4 in a 1:1 ratio to lost blood volume. To compare the ROTEM variables (coagulation time, clot formation time, alpha angle, clot firmness, and fibrinogen polymerization) with bleeding tendency, a hepatic incision was made and blood loss was measured. RESULTS: Median (25th, 75th percentile) fibrinogen polymerization was significantly higher after HS-HES infusion [11 mm (10, 11), P = 0.0034] when compared with administration of 4% gelatin [4.5 mm (3.0, 5.8)] or HES 130/0.4 [3.5 mm (2.3, 4.0)]. Median blood loss after liver incision was 725 mL (900, 375) after HS-HES, 1625 mL (1275, 1950) after 4% gelatin, and 1600 mL (1500, 1800) after 6% HES 130/0.4 (P = 0.004). Hemodynamic stabilization was traceable in all groups but showed differences regarding filling pressures. CONCLUSIONS: Resuscitation from hemorrhagic shock with HS-HES 200/0.62 results in less impairment of clot formation when compared with compensation of blood loss by administering 6% HES 130/0.4 or 4% gelatin.
Authors: Alexander A Hanke; Stephanie Maschler; Herbert Schöchl; Felix Flöricke; Klaus Görlinger; Klaus Zanger; Peter Kienbaum Journal: Scand J Trauma Resusc Emerg Med Date: 2011-02-10 Impact factor: 2.953
Authors: Thomas Palmaers; Elke Krämer; Julia Hinsenkamp; Hendrik Eismann; Dirk Scheinichen; Paul Frank Journal: Turk J Anaesthesiol Reanim Date: 2019-02-19
Authors: Nathan J White; Erika J Martin; Yongyun Shin; Donald F Brophy; Robert F Diegelmann; Kevin R Ward Journal: Scand J Trauma Resusc Emerg Med Date: 2010-12-07 Impact factor: 2.953
Authors: Julia R Coleman; Ernest E Moore; Christopher C Silliman; Gregory R Stettler; Geoffrey R Nunns; Jason M Samuels; Matthew G Bartley; Navin G Vigneshwar; Mitchell J Cohen; Miguel Fragoso; Angela Sauaia Journal: J Am Coll Surg Date: 2019-12-14 Impact factor: 6.532
Authors: Sarah Heringer; Lisa Kabelitz; Martin Kramer; Omid Nikoubashman; Marc A Brockmann; Stefanie Kirschner; Martin Wiesmann Journal: PLoS One Date: 2019-08-29 Impact factor: 3.240