End-tidal carbon dioxide (ETCO2) and ventricular fibrillation amplitude spectral area (AMSA) for shock outcome prediction in out-of-hospital cardiac arrest. Are they two sides of the same coin?
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G. Iotti | E. Storti | M. Luppi | L. Oltrona Visconti | A. Vecchi | F. Mojoli | M. Curti | R. De Ponti | C. Fava | E. Baldi | A. Palo | G. Danzi | S. Savastano | S. Buratti | L. Frigerio | U. Irusta | E. Aramendi | C. Vimercati | S. Caico | E. Contri | C. Fantoni | V. Musella | M. Botteri | Beatriz Chicote | L. Carnevale | Martina Paglino | G. Villa | M. Pagani | S. Compagnoni | P. Centineo | E. Taravelli | R. Bertona | V. Sgromo | Matteo Caresani | S. Molinari | A. Pagliosa | Antonella De Pirro | R. Fracchia | A. Cuzzoli | Guido Matiz | Alessandra Russo | C. Franzosi | D. Franchi | F. Giovenzana | Giovanni Buetto | Guido Garzena | Irene Raimondi Cominesi | M. Migliori | Paola Genoni | R. Osti | A. Marioni | B. Lusona | Paola Centineo
[1] A. Idris,et al. Value of capnography to predict defibrillation success in out-of-hospital cardiac arrest. , 2019, Resuscitation.
[2] Wanchun Tang,et al. Cardiopulmonary resuscitation ameliorates myocardial mitochondrial dysfunction in a cardiac arrest rat model. , 2019, The American journal of emergency medicine.
[3] A. Bardají,et al. Variation and correlation of end-tidal CO2 and amplitude spectrum area in a refractory ventricular fibrillation. A case from the ReCaPTa study. , 2018, Resuscitation.
[4] G. Iotti,et al. End-tidal carbon dioxide and defibrillation success in out-of-hospital cardiac arrest. , 2017, Resuscitation.
[5] David D. Salcido,et al. Predictive value of amplitude spectrum area of ventricular fibrillation waveform in patients with acute or previous myocardial infarction in out-of-hospital cardiac arrest. , 2017, Resuscitation.
[6] David G. Benditt,et al. Correlation of end tidal carbon dioxide, amplitude spectrum area, and coronary perfusion pressure in a porcine model of cardiac arrest , 2017, Physiological reports.
[7] F. Sterz,et al. Feasibility of the capnogram to monitor ventilation rate during cardiopulmonary resuscitation. , 2017, Resuscitation.
[8] P. Kudenchuk,et al. Ventricular fibrillation waveform measures and the etiology of cardiac arrest. , 2016, Resuscitation.
[9] Hehua Zhang,et al. Combining Amplitude Spectrum Area with Previous Shock Information Using Neural Networks Improves Prediction Performance of Defibrillation Outcome for Subsequent Shocks in Out-Of-Hospital Cardiac Arrest Patients , 2016, PloS one.
[10] J. Soar,et al. The European resuscitation council guidelines for resuscitation 2015 , 2017 .
[11] Roger D. White,et al. Part 7: Adult Advanced Cardiovascular Life Support: 2015 American Heart Association Guidelines Update for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. , 2015, Circulation.
[12] Gavin D Perkins,et al. Cardiac Arrest and Cardiopulmonary Resuscitation Outcome Reports: Update of the Utstein Resuscitation Registry Templates for Out-of-Hospital Cardiac Arrest: A Statement for Healthcare Professionals From a Task Force of the International Liaison Committee on Resuscitation (American Heart Association, , 2015, Resuscitation.
[13] T. Oostendorp,et al. Ventricular fibrillation waveform characteristics differ according to the presence of a previous myocardial infarction: A surface ECG study in ICD-patients. , 2015, Resuscitation.
[14] Saeed Babaeizadeh,et al. Quantitative relationship between end-tidal carbon dioxide and CPR quality during both in-hospital and out-of-hospital cardiac arrest. , 2015, Resuscitation.
[15] Yongqin Li,et al. Amplitude spectrum area to guide defibrillation: a validation on 1617 patients with ventricular fibrillation. , 2014, Circulation.
[16] Yongqin Li,et al. Amplitude spectrum area to guide resuscitation-a retrospective analysis during out-of-hospital cardiopulmonary resuscitation in 609 patients with ventricular fibrillation cardiac arrest. , 2013, Resuscitation.
[17] M. Davies,et al. The prognostic value of end tidal carbon dioxide during cardiac arrest: a systematic review. , 2013, Resuscitation.
[18] Saeed Babaeizadeh,et al. Predicting defibrillation success in sudden cardiac arrest patients. , 2013, Journal of electrocardiology.
[19] Øystein Tømte,et al. Clinical pilot study of different hand positions during manual chest compressions monitored with capnography. , 2013, Resuscitation.
[20] K. Lee,et al. Effect of cardiopulmonary resuscitation on restoration of myocardial ATP in prolonged ventricular fibrillation. , 2013, Resuscitation.
[21] Wanchun Tang,et al. Optimizing the timing of defibrillation: the role of ventricular fibrillation waveform analysis during cardiopulmonary resuscitation. , 2012, Critical care clinics.
[22] C. Dameff,et al. Utility of the Ventricular Fibrillation Waveform to Predict a Return of Spontaneous Circulation and Distinguish Acute From Post Myocardial Infarction or Normal Swine in Ventricular Fibrillation Cardiac Arrest , 2011, Circulation. Arrhythmia and electrophysiology.
[23] J. Herlitz,et al. Mechanical active compression-decompression cardiopulmonary resuscitation (ACD-CPR) versus manual CPR according to pressure of end tidal carbon dioxide (P(ET)CO2) during CPR in out-of-hospital cardiac arrest (OHCA). , 2009, Resuscitation.
[24] David D. Salcido,et al. Association of intramyocardial high energy phosphate concentrations with quantitative measures of the ventricular fibrillation electrocardiogram waveform. , 2009, Resuscitation.
[25] T. Eftestøl,et al. Acute ischemic heart disease alters ventricular fibrillation waveform characteristics in out-of hospital cardiac arrest. , 2009, Resuscitation.
[26] P. Harris,et al. Research electronic data capture (REDCap) - A metadata-driven methodology and workflow process for providing translational research informatics support , 2009, J. Biomed. Informatics.
[27] R. Berg,et al. The influence of myocardial substrate on ventricular fibrillation waveform: A swine model of acute and postmyocardial infarction , 2008, Critical care medicine.
[28] J. Bisera,et al. Prediction of Successful Defibrillation in Human Victims of Out-of-Hospital cArdiac Arrest: A Retrospective Electrocardiographic Analysis , 2008, Anaesthesia and intensive care.
[29] R. Walker,et al. Definition of successful defibrillation , 2006, Critical care medicine.
[30] P. Steen,et al. Effects of Cardiopulmonary Resuscitation on Predictors of Ventricular Fibrillation Defibrillation Success During Out-of-Hospital Cardiac Arrest , 2004, Circulation.
[31] Wanchun Tang,et al. Stroke volumes and end-tidal carbon dioxide generated by precordial compression during ventricular fibrillation. , 2003, Critical care medicine.
[32] A. Amann,et al. The beneficial effect of basic life support on ventricular fibrillation mean frequency and coronary perfusion pressure. , 2001, Resuscitation.
[33] D J Roe,et al. Estimating effectiveness of cardiac arrest interventions: a logistic regression survival model. , 1997, Circulation.
[34] P. Steen,et al. Effects of various degrees of compression and active decompression on haemodynamics, end-tidal CO2, and ventilation during cardiopulmonary resuscitation of pigs. , 1996, Resuscitation.
[35] J. Ornato,et al. Relationship between cardiac output and the end-tidal carbon dioxide tension. , 1990, Annals of emergency medicine.
[36] M. Weil,et al. End-tidal carbon dioxide concentration during cardiopulmonary resuscitation. , 1988, The New England journal of medicine.
[37] M. Copass,et al. Amplitude of ventricular fibrillation waveform and outcome after cardiac arrest. , 1985, Annals of internal medicine.