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Artificial Organs|August 1, 1985
Anatomicomechanical study for the hydraulic line of a thermal left ventricular assist systemN Sato, J Snow, H Harasaki, et al.ASAIO Transactions|July 1, 1989
Methods for volume assessment of an air filled compliance chamberT Izutsu, R R Navarro, L K Fujimoto, et al.Pediatric Research|July 8, 2009
The effects of closed endotracheal suction on ventilation during conventional and high-frequency oscillatory ventilationNicholas J Kiraly, David G Tingay, John F Mills, et al.ASAIO Transactions|July 1, 1988
Systemic and local effects of heat dissipation in the thermally powered LVASH Emoto, H Harasaki, L K Fujimoto, et al.Artificial Organs|November 1, 1984
Human thoracic anatomy based on computed tomography for development of a totally implantable left ventricular assist systemL K Fujimoto, G Jacobs, J Przybysz, et al.Artificial Organs|October 1, 1988
The E4T electric powered total artificial heart (TAH)W A Smith, B F Hete, R J Kiraly, et al.ASAIO Journal (American Society for Artificial Internal Organs : 1992)|July 1, 1992
Effects of mechanical ventilation and spontaneous respiration on hemodynamics in calves with total artificial heartsK Fukamachi, H Irié, A Massiello, et al.Pediatric Research|July 8, 2009
The effect of suction method, catheter size, and suction pressure on lung volume changes during endotracheal suction in pigletsBeverley Copnell, Peter A Dargaville, Ethel M Ryan, et al.Intensive Care Medicine|May 12, 2007
A comparison of the effectiveness of open and closed endotracheal suctionBeverley Copnell, David G Tingay, Nicholas J Kiraly, et al.Artificial Organs|February 1, 1983
Experimental results for chronic left ventricular assist and total artificial heart developmentY Nosé, G Jacobs, R J Kiraly, et al.Pageof 5