Association between inflammatory markers and survival in comatose, resuscitated out-of-hospital cardiac arrest patients
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C. Hassager | J. Kjaergaard | J. Møller | S. Wiberg | Anika Klein | H. Schmidt | Jakob Hartvig Thomsen | M. Frydland | Anne Toftgaard Pedersen | J. Hartvig Thomsen
[1] J. Soar,et al. European Resuscitation Council and European Society of Intensive Care Medicine guidelines 2021: post-resuscitation care , 2021, Intensive Care Medicine.
[2] S. Hunziker,et al. Routine blood markers from different biological pathways improve early risk stratification in cardiac arrest patients: Results from the prospective, observational COMMUNICATE study. , 2018, Resuscitation.
[3] M. Wise,et al. Single versus Serial Measurements of Neuron-Specific Enolase and Prediction of Poor Neurological Outcome in Persistently Unconscious Patients after Out-Of-Hospital Cardiac Arrest – A TTM-Trial Substudy , 2017, PloS one.
[4] L. Køber,et al. Neuroprotective Effects of the Glucagon-Like Peptide-1 Analog Exenatide After Out-of-Hospital Cardiac Arrest: A Randomized Controlled Trial , 2016, Circulation.
[5] L. Køber,et al. GLP-1 analogues for neuroprotection after out-of-hospital cardiac arrest: study protocol for a randomized controlled trial , 2016, Trials.
[6] C. Callaway,et al. Inflammatory markers following resuscitation from out-of-hospital cardiac arrest-A prospective multicenter observational study. , 2016, Resuscitation.
[7] M. Wise,et al. Predictive value of interleukin-6 in post-cardiac arrest patients treated with targeted temperature management at 33 °C or 36 °C. , 2016, Resuscitation.
[8] J. Soar,et al. European Resuscitation Council and European Society of Intensive Care Medicine Guidelines for Post-resuscitation Care 2015: Section 5 of the European Resuscitation Council Guidelines for Resuscitation 2015. , 2015, Resuscitation.
[9] C. Hassager,et al. Systemic Inflammatory Response and Potential Prognostic Implications After Out-of-Hospital Cardiac Arrest: A Substudy of the Target Temperature Management Trial* , 2015, Critical care medicine.
[10] M. Wise,et al. Neuron-Speci fi c Enolase as a Predictor of Death or Poor Neurological Outcome After Out-of-Hospital Cardiac Arrest and Targeted Temperature Management at 33 C and 36 C , 2015 .
[11] J. Soar,et al. Prognostication in comatose survivors of cardiac arrest: An advisory statement from the European Resuscitation Council and the European Society of Intensive Care Medicine , 2014, Intensive Care Medicine.
[12] J. Soar,et al. Prognostication in comatose survivors of cardiac arrest: An advisory statement from the European Resuscitation Council and the European Society of Intensive Care Medicine , 2014, Intensive Care Medicine.
[13] E. Ruokonen,et al. Admission interleukin-6 is associated with post resuscitation organ dysfunction and predicts long-term neurological outcome after out-of-hospital ventricular fibrillation. , 2014, Resuscitation.
[14] C. Hassager,et al. The inflammatory response after out-of-hospital cardiac arrest is not modified by targeted temperature management at 33 °C or 36 °C. , 2014, Resuscitation.
[15] J. Smith,et al. Procalcitonin after cardiac arrest - an indicator of severity of illness, ischemia-reperfusion injury and outcome. , 2013, Resuscitation.
[16] C. Hassager,et al. Tertiary centres have improved survival compared to other hospitals in the Copenhagen area after out-of-hospital cardiac arrest. , 2013, Resuscitation.
[17] B. Böttiger,et al. [Post-resuscitation syndrome. Role of inflammation after cardiac arrest]. , 2012, Der Anaesthesist.
[18] S. Hunziker,et al. Serum procalcitonin, C‐reactive protein and white blood cell levels following hypothermia after cardiac arrest: a retrospective cohort study , 2010, European journal of clinical investigation.
[19] T. Cronberg,et al. Neuron specific enolase and S-100B as predictors of outcome after cardiac arrest and induced hypothermia. , 2009, Resuscitation.
[20] L. Rasmussen,et al. The impact of therapeutic hypothermia on neurological function and quality of life after cardiac arrest. , 2009, Resuscitation.
[21] R. Neumar,et al. Post–Cardiac Arrest Syndrome Epidemiology, Pathophysiology, Treatment, and Prognostication A Consensus Statement From the International Liaison Committee on Resuscitation (American Heart Association, Australian and New Zealand Council on Resuscitation, European Resuscitation Council, Heart and Strok , 2008 .
[22] A. Cariou,et al. Postresuscitation disease after cardiac arrest: a sepsis-like syndrome? , 2004, Current opinion in critical care.
[23] H. Reiber. Proteins in cerebrospinal fluid and blood: barriers, CSF flow rate and source-related dynamics. , 2003, Restorative neurology and neuroscience.
[24] E. Martin,et al. Marked activation of complement and leukocytes and an increase in the concentrations of soluble endothelial adhesion molecules during cardiopulmonary resuscitation and early reperfusion after cardiac arrest in humans , 2002, Critical care medicine.
[25] J. Cavaillon,et al. Successful Cardiopulmonary Resuscitation After Cardiac Arrest as a “Sepsis-Like” Syndrome , 2002, Circulation.
[26] B Jennett,et al. Assessment of outcome after severe brain damage. , 1975, Lancet.