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Chest|January 1, 1992
Aortic pressure during human cardiac arrest. Identification of pseudo-electromechanical dissociationN A Paradis, G B Martin, M G Goetting, et al.Meat Science|April 27, 2010
The relationship between exsanguination blood lactate concentration and carcass quality in slaughter pigsL N Edwards, T E Engle, J A Correa, et al.Circulation|August 8, 2001
Electrical induction of ventricular fibrillation for resuscitation from postcountershock pulseless and asystolic cardiac arrestsC T Leng, R D Berger, H Calkins, et al.Annals of Emergency Medicine|April 1, 1990
Effect of epinephrine on end-tidal carbon dioxide monitoring during CPRG B Martin, N T Gentile, N A Paradis, et al.Resuscitation|August 1, 1991
Effects of arterial and venous volume infusion on coronary perfusion pressures during canine CPRN T Gentile, G B Martin, T J Appleton, et al.Intensive Care Medicine Experimental|September 5, 2020
Intravenous calcium as a pressor in a swine model of hypoxic pseudo-pulseless electrical mechanical activity-a preliminary reportAlexander L Lindqwister, Joshua W Lampe, Jeffrey R Gould, et al.Critical Care Medicine|August 1, 1991
Aortic-carotid artery pressure differences and cephalic perfusion pressure during cardiopulmonary resuscitation in humansM G Goetting, N A Paradis, T J Appleton, et al.Chest|March 27, 1998
Emergency department cardiopulmonary bypass in the treatment of human cardiac arrestG B Martin, E P Rivers, N A Paradis, et al.Canada Communicable Disease Report = Releve Des Maladies Transmissibles Au Canada|July 30, 2019
A public health enhanced surveillance system for a mass gathering eventC Huot, A Paradis, K Hammond-Collins, et al.Critical Care Medicine|February 1, 1994
High atrial natriuretic peptide concentrations blunt the pressor response during cardiopulmonary resuscitation in humansN A Paradis, J Wortsman, W B Malarkey, et al.Pageof 9