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Physical Review Letters|August 7, 2007
Tunable nonlinear viscoelastic "focusing" in a microfluidic deviceA M Leshansky, A Bransky, N Korin, et al.Critical Care Medicine|August 1, 1989
Effect of vest cardiopulmonary resuscitation rate on cardiac output and coronary blood flowS A Ben-Haim, R Shofti, B Ostrow, et al.Angiology|February 1, 1984
Cardiopulmonary resuscitation by intrathoracic pressure variations--in vivo studies and computer simulationR Beyar, Y Kishon, U Dinnar, et al.Cardiovascular Research|August 1, 1986
Augmentation of cardiac output and carotid blood flow by chest and abdomen phased compression cardiopulmonary resuscitationE Kimmel, R Beyar, U Dinnar, et al.Basic Research in Cardiology|May 1, 1986
Blood gas and acid-base balance during cardiopulmonary resuscitation by intrathoracic and abdominal pressure variationsR Beyar, Y Kishon, E Kimmel, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|February 1, 1992
Role of the diaphragm in chest wall mechanicsO Lichtenstein, S A Ben-Haim, G M Saidel, et al.Transactions - American Society for Artificial Internal Organs|January 1, 1984
Noninvasive cardiac assist by extension of phase D compression cardiopulmonary resuscitation (PCCPR)R Beyar, E Kimmel, U Dinnar, et al.The Journal of Cardiovascular Surgery|March 1, 1991
Low positive end expiratory pressures improve the left ventricular workload versus coronary blood flow relationshipS A Ben-Haim, R Amar, R Shofty, et al.Cardiovascular Research|June 1, 1985
Intrathoracic and abdominal pressure variations as an efficient method for cardiopulmonary resuscitation: studies in dogs compared with computer model resultsR Beyar, Y Kishon, E Kimmel, et al.Medical & Biological Engineering & Computing|January 1, 1990
Pressures generated by rib cage and abdominal compressions during cardiopulmonary resuscitationS A Ben-Haim, R Shofti, U Dinnar, et al.Pageof 3