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The Annals of Thoracic Surgery|February 1, 1980
Improved anesthesia for deep surface-induced hypothermia: the halothane-diethyl ether azeotropeM P Sands, D H Dillard, E A Hessel, et al.
The Journal of Cardiovascular Surgery|January 1, 1983
Prolongation of the safe interval of hypothermic circulatory arrest: 90 minutesK Haneda, M P Sands, R Thomas, et al.
The Annals of Thoracic Surgery|March 1, 1982
Circulatory dynamics during surface-induced hypothermia under halothane-ether azeotrope anesthesiaK Haneda, M P Sands, R Thomas, et al.
The American Journal of Cardiology|September 1, 1980
Determination of cardiac output by thermodilution during hypothermiaS H Merrick, E A Hessel, D H Dillard
The American Surgeon|September 1, 1975
Outcome analysis of surgical therapy for patients with angina pectorisL C Winterscheid, D H Dillard, E A Hessel, et al.
The Journal of Thoracic and Cardiovascular Surgery|March 1, 1982
Results of a survey of the professional activities of 811 cardiopulmonary perfusionistsD W Miller, J M Binford, E A Hessel
Cryobiology|December 1, 1986
Whole body protection during three hours of total circulatory arrest: an experimental studyK Haneda, R Thomas, M P Sands, et al.
The Journal of Cardiovascular Surgery|January 1, 1984
The importance of appropriate concentrations of inspired carbon dioxide on induced hypothermia under halothane-ether azeotrope anesthesiaK Haneda, R Thomas, D G Breazeale, et al.
The Journal of Thoracic and Cardiovascular Surgery|February 1, 1979
Use of athrombogenic tubing for perfusion rewarming following surface-induced deep hypothermiaH Mohri, T Ishitoya, E A Hessel, et al.
The Journal of Thoracic and Cardiovascular Surgery|May 1, 1976
Heparinless, oxygenatorless perfusion rewarming following surface-induced deep hypothermia for open-heart surgeryH Mohri, T Ishitoya, G DiBenedetto, et al.
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