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R G Mark

Showing results (21-30 of 41) with videos related to

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Computers in Cardiology|November 25, 2003
PhysioNet: a research resource for studies of complex physiologic and biomedical signalsG B Moody, R G Mark, A L Goldberger
Computers in Cardiology|December 23, 2003
MIMIC II: a massive temporal ICU patient database to support research in intelligent patient monitoringM Saeed, C Lieu, G Raber, et al.
Biomedical Instrumentation & Technology|March 1, 1992
Improved detection and classification of arrhythmias in noise-corrupted electrocardiograms using contextual information within an expert systemS D Greenwald, R S Patil, R G Mark
Computers in Cardiology|June 28, 2002
Numerical analysis of blood flow through a stenosed artery using a coupled, multiscale simulation methodE B Shim, R D Kamm, T Heldt, et al.
Computers in Cardiology|January 25, 2002
Computational models of cardiovascular function for analysis of post-flight orthostatic intoleranceT Heldt, E B Shim, R D Kamm, et al.
Computers in Cardiology|December 3, 2003
Do nonlinearities play a significant role in short term, beat-to-beat variability?H G Choi, R Mukkamala, G B Moody, et al.
Computers in Cardiology|December 3, 2003
Model-based parameter estimation using cardiovascular response to orthostatic stressT Heldt, E B Shim, R D Kamm, et al.
Computers in Cardiology|January 25, 2002
Computational model of cardiovascular function during orthostatic stressT Heldt, E B Shim, R D Kamm, et al.
The American Journal of Physiology|June 1, 1989
Low-frequency oscillations in arterial pressure and heart rate: a simple computer modelJ B Madwed, P Albrecht, R G Mark, et al.
Computer Methods and Programs in Biomedicine|April 1, 1993
bpshape wk4: a computer program that implements a physiological model for analyzing the shape of blood pressure waveformsW C Ocasio, D R Rigney, K P Clark, et al.
Pageof 5

Showing results (21-30 of 41) with videos related to

Sort By:
Pageof 5
Computers in Cardiology|November 25, 2003
PhysioNet: a research resource for studies of complex physiologic and biomedical signalsG B Moody, R G Mark, A L Goldberger
Computers in Cardiology|December 23, 2003
MIMIC II: a massive temporal ICU patient database to support research in intelligent patient monitoringM Saeed, C Lieu, G Raber, et al.
Biomedical Instrumentation & Technology|March 1, 1992
Improved detection and classification of arrhythmias in noise-corrupted electrocardiograms using contextual information within an expert systemS D Greenwald, R S Patil, R G Mark
Computers in Cardiology|June 28, 2002
Numerical analysis of blood flow through a stenosed artery using a coupled, multiscale simulation methodE B Shim, R D Kamm, T Heldt, et al.
Computers in Cardiology|January 25, 2002
Computational models of cardiovascular function for analysis of post-flight orthostatic intoleranceT Heldt, E B Shim, R D Kamm, et al.
Computers in Cardiology|December 3, 2003
Do nonlinearities play a significant role in short term, beat-to-beat variability?H G Choi, R Mukkamala, G B Moody, et al.
Computers in Cardiology|December 3, 2003
Model-based parameter estimation using cardiovascular response to orthostatic stressT Heldt, E B Shim, R D Kamm, et al.
Computers in Cardiology|January 25, 2002
Computational model of cardiovascular function during orthostatic stressT Heldt, E B Shim, R D Kamm, et al.
The American Journal of Physiology|June 1, 1989
Low-frequency oscillations in arterial pressure and heart rate: a simple computer modelJ B Madwed, P Albrecht, R G Mark, et al.
Computer Methods and Programs in Biomedicine|April 1, 1993
bpshape wk4: a computer program that implements a physiological model for analyzing the shape of blood pressure waveformsW C Ocasio, D R Rigney, K P Clark, et al.
Pageof 5