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1.
Am J Health Syst Pharm ; 80(3): 102-110, 2023 Jan 24.
Article in English | MEDLINE | ID: mdl-36269999

ABSTRACT

PURPOSE: Targeted temperature management (TTM), including normothermia and therapeutic hypothermia, is used primarily for comatose patients with return of spontaneous circulation after cardiac arrest or following neurological injury. Despite the potential benefits of TTM, risks associated with physiological alterations, including electrolyte shifts, may require intervention. SUMMARY: This review describes the normal physiological balance of electrolytes and temperature-related alterations as well as the impact of derangements on patient outcomes, providing general recommendations for repletion and monitoring of key electrolytes, including potassium, phosphate, and magnesium. CONCLUSION: Frequent monitoring and consideration of patient variables such as renal function and other risk factors for adverse effects are important areas of awareness for clinicians caring for patients undergoing TTM.


Subject(s)
Cardiopulmonary Resuscitation , Heart Arrest , Hypothermia, Induced , Out-of-Hospital Cardiac Arrest , Humans , Hypothermia, Induced/adverse effects , Heart Arrest/etiology , Electrolytes , Potassium , Risk Factors , Out-of-Hospital Cardiac Arrest/etiology , Out-of-Hospital Cardiac Arrest/therapy
2.
J Cardiothorac Vasc Anesth ; 36(9): 3561-3569, 2022 09.
Article in English | MEDLINE | ID: mdl-35691853

ABSTRACT

OBJECTIVE: To evaluate the effect of anticoagulation targets and intensity on bleeding events, thrombotic events, and transfusion requirements in patients with acute respiratory distress syndrome (ARDS) receiving venovenous extracorporeal membrane oxygenation (ECMO) and continuous-infusion heparin. DESIGN: A retrospective cohort study. SETTING: At a single-center, large academic medical center. PARTICIPANTS: One hundred thirty-six critically ill patients. INTERVENTIONS: The following three therapeutic targets were implemented over time and evaluated: (1) no protocol (September 2013-August 2016): no standardized anticoagulation protocol or transfusion thresholds; (2) <50 seconds (September 2016-January 2018): standardized activated partial thromboplastin time (aPTT) goal of <50 seconds, maximum heparin infusion rate of 1,200 units/h, transfusion threshold of hemoglobin (Hgb) <8 g/dL; and (3) 40-to-50 seconds (February 2018-December 2019): aPTT goal of 40-to-50 sec, no maximum heparin infusion rate, transfusion threshold of Hgb <7 g/dL. MEASUREMENTS AND MAIN RESULTS: Continuous variables were compared using the Kruskal-Wallis test, and categorical variables were compared using Fisher exact tests. The primary endpoint, an incidence of at least 1 bleeding event, was highest in the no-protocol group though not statistically different among groups (39.3% v 26.7% v 34%, p = 0.5). Thrombotic complications were similar. The median units of packed red blood cells transfused were highest in the no-protocol group (3 v 2 v 0.5, p < 0.001). CONCLUSION: Anticoagulation protocols standardizing aPTT goals to <50 or 40-to-50 seconds may be a reasonable strategy for patients receiving venovenous ECMO for ARDS. More restrictive hemoglobin transfusion thresholds, in combination with lower aPTT targets, may be associated with a reduction in transfusion requirements.


Subject(s)
Extracorporeal Membrane Oxygenation , Respiratory Distress Syndrome , Thrombosis , Anticoagulants/adverse effects , Extracorporeal Membrane Oxygenation/adverse effects , Extracorporeal Membrane Oxygenation/methods , Hemoglobins , Hemorrhage/chemically induced , Hemorrhage/complications , Hemorrhage/therapy , Heparin/adverse effects , Humans , Respiratory Distress Syndrome/therapy , Retrospective Studies , Thrombosis/drug therapy , Thrombosis/etiology , Thrombosis/prevention & control
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