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Medical & Biological Engineering & Computing|March 1, 1995
Conoidal dipole model of electrical field produced by the human stomachM P Mintchev, K L Bowes
Medical & Biological Engineering & Computing|June 6, 1998
Comparative quantification of gastric electrical activity and electrogastrogramsM P Mintchev, K L Bowes
Annals of Biomedical Engineering|December 12, 1997
Do increased electrogastrographic frequencies always correspond to internal tachygastria?M P Mintchev, K L Bowes
Medical Engineering & Physics|August 5, 1998
Computer simulation of the effect of changing abdominal thickness on the electrogastrogramM P Mintchev, K L Bowes
Medical & Biological Engineering & Computing|June 6, 1998
Computer simulation of the impact of different dimensions of the stomach on the validity of electrogastrogramsM P Mintchev, K L Bowes
Medical & Biological Engineering & Computing|May 1, 1996
Extracting quantitative information from digital electrogastrogramsM P Mintchev, K L Bowes
IEEE Transactions on Bio-Medical Engineering|March 18, 2000
Nonlinear adaptive noise compensation in electrogastrograms recorded from healthy dogsM P Mintchev, A Girard, K L Bowes
Digestive Diseases and Sciences|June 1, 1997
Comparative assessment of power dynamics of gastric electrical activityM P Mintchev, A Stickel, K L Bowes
Digestive Diseases and Sciences|May 20, 1998
Dynamics of the level of randomness in gastric electrical activityM P Mintchev, A Stickel, K L Bowes
Gastroenterology|June 1, 1997
Electrogastrography can recognize gastric electrical uncoupling in dogsM P Mintchev, S J Otto, K L Bowes
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