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1-11 of 11
Keywords: Bioelectromagnetics
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Journal Articles
COMPEL (2025) 44 (5): 865–880.
Published: 22 September 2025
... 2025 31 07 2025 © 2025 Emerald Publishing Limited 2025 Emerald Publishing Limited Licensed re-use rights only Anisotropy Electric fields Finite element analysis Bioelectromagnetics Material modeling Federal Ministry of Research, Technology and Space 13GW0591B...
Journal Articles
COMPEL (2023) 42 (1): 56–67.
Published: 31 May 2022
... Emerald Publishing Limited 2022 Emerald Publishing Limited Licensed re-use rights only High-frequency rTMS PFC LFPs Spikes Time-varying spectrum coherence Electromagnetic fields Electromagnetism Bioelectromagnetics Repetitive transcranial magnetic stimulation (rTMS), as a novel...
Journal Articles
Vahid Badeli, Sascha Ranftl, Gian Marco Melito, Alice Reinbacher-Köstinger, Wolfgang Von Der Linden, Katrin Ellermann, Oszkar Biro
COMPEL (2022) 41 (3): 824–839.
Published: 21 December 2021
... ¯ . To reduce the computational cost, only the first half of the cardiac cycle (0.5 s), which is the more significant phase, is considered. Numerical analysis Finite element method Sensors Impedance Bioelectromagnetics Uncertainties in electromagnetics Bayesian inference Probability theory...
Journal Articles
COMPEL (2020) 39 (3): 739–755.
Published: 21 April 2020
... to indicate the restriction to the domain Ωi. In the absence of induction, the electric field can be expressed via a time-depending scalar potential φ by: (1) E → = − ∇ φ . Electro-quasistatic fields Biological cells Bioelectromagnetics Finite element...
Journal Articles
Luca G. Campana, Paolo Di Barba, Fabrizio Dughiero, Michele Forzan, Maria Evelina Mognaschi, Rudy Rizzo, Elisabetta Sieni
COMPEL (2019) 38 (1): 348–361.
Published: 26 October 2018
... Electric field Finite element simulation Bioelectromagnetics Electrochemotherapy (ECT) is a cancer therapy introduced by Mir et al. (Mir, 2001 ; Mir and Orlowski, 1999 ; Marty et al., 2006 ; Mir et al., 2006 ; Mir et al., 1998) and currently used...
Journal Articles
COMPEL (2015) 34 (4): 1085–1100.
Published: 06 July 2015
... and increase the rate of new bone formation (Funk and Monsees, 2006 ; Zhao, 2009). Finite element modelling Thermal modelling Bioelectromagnetics Body systems and organs Electrostimulation (ES) denotes the application of an electric field (EF) to boost tissue recovery (Simon and Simon, 2008...
Journal Articles
COMPEL (2015) 34 (2): 439–447.
Published: 02 March 2015
... with this numerical phantom were used as a reference for comparison with simplified models. © Emerald Group Publishing Limited 2015 Wave propagation Bioelectromagnetics Body area network WBAN BAN FDTD Human body model Human phantom Interest of telecommunication engineers in wireless body...
Journal Articles
COMPEL (2003) 22 (3): 457–469.
Published: 01 September 2003
... difficulties appearing are: Bioelectromagnetics Modelling Optimization Finite element method The electromagnetic fields are very usual in our daily life. The increasing number of power systems and telecommunication systems makes the exposure to these fields more and more important. On the other...
Journal Articles
COMPEL (2001) 20 (3): 665–675.
Published: 01 September 2001
..., related to the new TEAM problem No. 31. © MCB UP Limited 2001 Inverse problems Biomedical Bioelectromagnetics Current density reconstruction (CDR) of cardiac activation based on non‐invasively obtained MCG (magnetocardiogram) or ECG (electrocardiogram) data are a new and promising...
Journal Articles
COMPEL (2001) 20 (2): 595–606.
Published: 01 June 2001
... the results as much as possible a priori information of the source space should be taken into account. Noninvasive functional localization of normal and pathological function of the brain or the heart is a major goal of research in bioelectromagnetics. Numerous inverse techniques are used to localize...
Journal Articles
COMPEL (1998) 17 (2): 257–260.
Published: 01 April 1998
... is presented. © MCB UP Limited 1998 Bioelectromagnetics Magnetic stimulation Modelling Although bioelectromagnetic interactions are of various types (for example, electric induction, magnetic induction by variation in time, magnetic induction by motion, interaction with magnetites...
