The rationale of this study was to investigate if the bases of generation of the electrical activity of the whole gut are the same. For this reason, we developed a mathematical dipole model, based on the same foundations used to simulate the electrical activity of the human stomach, to generate the electrical activity of the transverse cat colon. The model developed takes into account both the geometry of the transverse colon represented by a cylinder of finite length and the myoelectrical dynamics of the cells. The extracellular electrical activity was simulated by the periodic movement of an annular band polarised by electric dipoles. The simulation not only reproduces both the waveform, amplitude, phase lag and frequency of the ECA and the frequency, duration and periodicity of the ERA but also allows us to reproduce both increases/decreases of frequency, the inversion of phase conditions of the ECA and ERA, and to underline the anatomical and physiological parameters that can modify the ECA amplitude, such as the radius of the colon and the cells' dipole moment density. The simulation also picks up not only the effects of the probes' type (unipolar, bipolar, endoluminal, external) and of their positioning during in vivo experiments made by implanted electrodes to record the ECA and ERA, but also allows us to find both the theoretical best configuration for the surface electrodes and the effects of the distance between the abdominal electrodes and the source of the electrical activity, and of the distance between the electrodes. (C) 2008 IPEM. Published by Elsevier Ltd. All rights reserved.
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Med Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Ctr Excellence Technol & Engn Med TANDEM, Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Becker, S.
Popp, K.
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Med Univ Lubeck, Dept Radiat Oncol, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Popp, K.
Mang, A.
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Med Univ Lubeck, Inst Med Engn, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Mang, A.
Schuetz, T. A.
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Med Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Med Univ Lubeck, Grad Sch Comp Med & Life Sci, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Schuetz, T. A.
Toma, A.
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Med Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Ctr Excellence Technol & Engn Med TANDEM, Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Toma, A.
Dunst, J.
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Med Univ Lubeck, Dept Radiat Oncol, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Dunst, J.
Buzug, T. M.
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Med Univ Lubeck, Inst Med Engn, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Buzug, T. M.
Rades, D.
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Med Univ Lubeck, Dept Radiat Oncol, D-23538 Lubeck, GermanyMed Univ Lubeck, Inst Med Engn, D-23538 Lubeck, Germany
Rades, D.
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS,
2012,
84
(03):
: S297
-
S298