Observation and quantification of gas bubble formation on a mechanical heart valve.
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S. Deutsch | J. Tarbell | A. Fontaine | J M Tarbell | S Deutsch | A A Fontaine | H Y Lin | B A Bianccucci | H. Y. Lin | B. A. Bianccucci | Steven Deutsch | John M. Tarbell | Hsin-Yi Lin | Brian A. Bianccucci
[1] S. Deutsch,et al. In vitro studies of gas bubble formation by mechanical heart valves. , 1999, The Journal of heart valve disease.
[2] C. Zapanta,et al. A comparison of the cavitation potential of prosthetic heart valves based on valve closing dynamics. , 1998, The Journal of heart valve disease.
[3] E. Ringelstein,et al. Oxygen inhalation can differentiate gaseous from nongaseous microemboli detected by transcranial Doppler ultrasound. , 1997, Stroke.
[4] M. Spencer,et al. Influence of oxygen ventilation on Doppler microemboli signals in patients with artificial heart valves. , 1997, Stroke.
[5] D B Geselowitz,et al. Mitral heart valve cavitation in an artificial heart environment. , 1996, The Journal of heart valve disease.
[6] N. Hwang,et al. Transient pressure at closing of a monoleaflet mechanical heart valve prosthesis: mounting compliance effect. , 1995, The Journal of heart valve disease.
[7] J. Svennevig,et al. Incidence and frequency of cerebral embolic signals in patients with a similar bileaflet mechanical heart valve. , 1995, Stroke.
[8] T. Pasierski,et al. Spontaneously appearing microbubbles associated with prosthetic cardiac valves detected by transesophageal echocardiography. , 1994, American heart journal.
[9] D B Geselowitz,et al. A method for real-time in vitro observation of cavitation on prosthetic heart valves. , 1994, Journal of biomechanical engineering.
[10] D B Geselowitz,et al. An in-vitro investigation of prosthetic heart valve cavitation in blood. , 1994, The Journal of heart valve disease.
[11] G. D. Ward,et al. Cavitation damage of pyrolytic carbon in mechanical heart valves. , 1994, The Journal of heart valve disease.
[12] K B Chandran,et al. Pressure field in the vicinity of mechanical valve occluders at the instant of valve closure: correlation with cavitation initiation. , 1994, The Journal of heart valve disease.
[13] K. Lees,et al. Prevalence and Characteristics of Intracranial Microemboli Signals in Patients With Different Types of Prosthetic Cardiac Valves , 1994, Stroke.
[14] M. Dauzat,et al. Gas bubble emboli detected by transcranial Doppler sonography in patients with prosthetic heart valves: a preliminary report. , 1994, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[15] K. Lees,et al. Quantification of Ultrasound Emboli Signals in Patients With Cardiac and Carotid Disease , 1993, Stroke.
[16] W. Markiewicz,et al. Spontaneous echocardiographic contrast with the carbomedics mitral valve prosthesis. , 1992, The American journal of cardiology.
[17] S. Deutsch,et al. Real-time in vitro observation of cavitation on prosthetic heart valves , 1991, 1993 IEEE Annual Northeast Bioengineering Conference.
[18] H. Reul,et al. Cavitation Potential of Mechanical Heart Valve Prostheses , 1991, The International journal of artificial organs.
[19] K. Chan,et al. Survey of literature related to the problems of gas embolism in human body. , 1969, Journal of biomechanics.
[20] E. Munson,et al. Effect of Nitrous Oxide on Venous Air Embolism , 1966, Anesthesiology.
[21] R. Anderson,et al. PULMONARY AIR EMBOLI DURING CARDIAC SURGERY. , 1965, The Journal of thoracic and cardiovascular surgery.
[22] F. Heppner. Air Embolism Eight Hours after Ventriculography , 1952 .
[23] Harvey En. Decompression Sickness and Bubble Formation in Blood and Tissues. , 1945 .
[24] D. Whitaker,et al. THE RELATION OF EXERCISE TO BUBBLE FORMATION IN ANIMALS DECOMPRESSED TO SEA LEVEL FROM HIGH BAROMETRIC PRESSURES , 1945, The Journal of general physiology.
[25] Moore Rm,et al. INJECTIONS OF AIR AND OF CARBON DIOXIDE INTO A PULMONARY VEIN. , 1940 .