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R M Arthur

Showing results (11-20 of 58) with videos related to

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Ultrasonic Imaging|October 1, 1982
A dispersive model for the propagation of ultrasound in soft tissueK V Gurumurthy, R M Arthur
Annals of Biomedical Engineering|September 1, 1999
Direct inference of the spectra of pericardial potentials using the boundary-element methodD G Beetner, R M Arthur
IEEE Transactions on Medical Imaging|January 1, 1989
Imaging via inversion of ellipsoidal projections of solutions to the linear acoustic wave equation [medical ultrasound]R M Arthur, S R Broadstone
Ultrasonic Imaging|April 1, 1994
Real-time ultrasonic scan conversion via linear interpolation of oversampled vectorsW D Richard, R M Arthur
Journal of Electrocardiology|January 1, 1971
Derivation of aimed electrocardiographic leads from the multiple expansionD B Geselowitz, R M Arthur
Journal of Clinical Engineering|March 12, 1981
Achieving the promise of clinical engineeringR M Arthur, S B Boxerman
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|January 22, 2002
A physically based, probabilistic model for ultrasonic images incorporating shape, microstructure, and system characteristicsJ W Trobaugh, R M Arthur
IEEE Transactions on Medical Imaging|January 1, 1991
Determination of time-of-flight surfaces using the method of moments [US imaging]S R Broadstone, R M Arthur
Hospitals|July 16, 1980
Matching technical jobs with needsS B Boxerman, R M Arthur
Biomedical Sciences Instrumentation|April 17, 1978
A microprocessor-based digital echocardiography systemD R Jones, R M Arthur
Pageof 6

Showing results (11-20 of 58) with videos related to

Sort By:
Pageof 6
Ultrasonic Imaging|October 1, 1982
A dispersive model for the propagation of ultrasound in soft tissueK V Gurumurthy, R M Arthur
Annals of Biomedical Engineering|September 1, 1999
Direct inference of the spectra of pericardial potentials using the boundary-element methodD G Beetner, R M Arthur
IEEE Transactions on Medical Imaging|January 1, 1989
Imaging via inversion of ellipsoidal projections of solutions to the linear acoustic wave equation [medical ultrasound]R M Arthur, S R Broadstone
Ultrasonic Imaging|April 1, 1994
Real-time ultrasonic scan conversion via linear interpolation of oversampled vectorsW D Richard, R M Arthur
Journal of Electrocardiology|January 1, 1971
Derivation of aimed electrocardiographic leads from the multiple expansionD B Geselowitz, R M Arthur
Journal of Clinical Engineering|March 12, 1981
Achieving the promise of clinical engineeringR M Arthur, S B Boxerman
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|January 22, 2002
A physically based, probabilistic model for ultrasonic images incorporating shape, microstructure, and system characteristicsJ W Trobaugh, R M Arthur
IEEE Transactions on Medical Imaging|January 1, 1991
Determination of time-of-flight surfaces using the method of moments [US imaging]S R Broadstone, R M Arthur
Hospitals|July 16, 1980
Matching technical jobs with needsS B Boxerman, R M Arthur
Biomedical Sciences Instrumentation|April 17, 1978
A microprocessor-based digital echocardiography systemD R Jones, R M Arthur
Pageof 6