Literature DB >> 6633010

Multioscillator simulator for gastrointestinal electrical activity modelling.

D A Linkens, M Khelfa, G Nicklin.   

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Year:  1983        PMID: 6633010     DOI: 10.1007/BF02442385

Source DB:  PubMed          Journal:  Med Biol Eng Comput        ISSN: 0140-0118            Impact factor:   2.602


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  13 in total

1.  A conversational program for analytical modelling of action potentials in nerve and muscle.

Authors:  R J Patton; D A Linkens
Journal:  Comput Programs Biomed       Date:  1975-12

2.  Mathematical modeling of the colorectal myoelectrical activity in humans.

Authors:  D A Linkens; I Taylor; H L Duthie
Journal:  IEEE Trans Biomed Eng       Date:  1976-03       Impact factor: 4.538

3.  Hodgkin-Huxley type electronic modelling of gastrointestinal electrical activity.

Authors:  R J Patton; D A Linkens
Journal:  Med Biol Eng Comput       Date:  1978-03       Impact factor: 2.602

4.  A mathematical model of the slow-wave electrical activity of the human small intestine.

Authors:  B Robertson-Dunn; D A Linkens
Journal:  Med Biol Eng       Date:  1974-11

5.  Simulation of the electric-control activity of the stomach by an array of relaxation oscillators.

Authors:  S K Sarna; E E Daniel; Y J Kingma
Journal:  Am J Dig Dis       Date:  1972-04

6.  Simulation of the electrical and mechanical gradient of the small intestine.

Authors:  T S Nelsen; J C Becker
Journal:  Am J Physiol       Date:  1968-04

7.  An electronic model of neuroelectric point processes.

Authors:  E R Lewis
Journal:  Kybernetik       Date:  1968-07

8.  Localization of the duodenal pacemaker and its role in the organization of duodenal myoelectric activity.

Authors:  J Hermon-Taylor; C F Code
Journal:  Gut       Date:  1971-01       Impact factor: 23.059

9.  Simulation of slow-wave electrical activity of small intestine.

Authors:  S K Sarna; E E Daniel; Y J Kingma
Journal:  Am J Physiol       Date:  1971-07

10.  Electronic modeling of slow-waves and spike-activity in intestinal tissue.

Authors:  D A Linkens
Journal:  IEEE Trans Biomed Eng       Date:  1980-07       Impact factor: 4.538

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  2 in total

1.  Conoidal dipole model of electrical field produced by the human stomach.

Authors:  M P Mintchev; K L Bowes
Journal:  Med Biol Eng Comput       Date:  1995-03       Impact factor: 2.602

2.  Polygonally Meshed Dipole Model Simulation of the Electrical Field Produced by the Stomach and Intestines.

Authors:  Masaki Kawano; Takahiro Emoto
Journal:  Comput Math Methods Med       Date:  2020-10-21       Impact factor: 2.238

  2 in total

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