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Tania Hanekom
Tania Hanekom
Professor in Electronic Engineering, University of Pretoria
在 up.ac.za 的电子邮件经过验证
标题
引用次数
引用次数
年份
Three-dimensional spiraling finite element model of the electrically stimulated cochlea
T Hanekom
Ear and hearing 22 (4), 300-315, 2001
942001
A finite element model for describing the effect of muscle shortening on surface EMG
L Mesin, M Joubert, T Hanekom, R Merletti, D Farina
IEEE transactions on Biomedical Engineering 53 (4), 593-600, 2006
912006
Effect of spatial filtering on crosstalk reduction in surface EMG recordings
L Mesin, S Smith, S Hugo, S Viljoen, T Hanekom
Medical engineering & physics 31 (3), 374-383, 2009
742009
Modelling encapsulation tissue around cochlear implant electrodes
T Hanekom
Medical and Biological Engineering and Computing 43, 47-55, 2005
562005
Constructing a three‐dimensional electrical model of a living cochlear implant user's cochlea
TK Malherbe, T Hanekom, JJ Hanekom
International journal for numerical methods in biomedical engineering 32 (7 …, 2016
532016
The effect of the resistive properties of bone on neural excitation and electric fields in cochlear implant models
TK Malherbe, T Hanekom, JJ Hanekom
Hearing research 327, 126-135, 2015
412015
Predicting action potential characteristics of human auditory nerve fibres through modification of the Hodgkin-Huxley equations
JE Smit, T Hanekom, JJ Hanekom
South African Journal of Science 104 (7), 284-292, 2008
372008
Three-dimensional models of cochlear implants: a review of their development and how they could support management and maintenance of cochlear implant performance
T Hanekom, JJ Hanekom
Network: Computation in Neural Systems 27 (2-3), 67-106, 2016
362016
Threshold predictions of different pulse shapes using a human auditory nerve fibre model containing persistent sodium and slow potassium currents
JE Smit, T Hanekom, A Van Wieringen, J Wouters, JJ Hanekom
Hearing research 269 (1-2), 12-22, 2010
352010
Can subject-specific single-fibre electrically evoked auditory brainstem response data be predicted from a model?
TK Malherbe, T Hanekom, JJ Hanekom
Medical engineering & physics 35 (7), 926-936, 2013
252013
Modelled temperature-dependent excitability behaviour of a single ranvier node for a human peripheral sensory nerve fibre
JE Smit, T Hanekom, JJ Hanekom
Biological cybernetics 100, 49-58, 2009
192009
Modelled temperature-dependent excitability behaviour of a generalised human peripheral sensory nerve fibre
JE Smit, T Hanekom, JJ Hanekom
Biological cybernetics 101, 115-130, 2009
172009
Development of a voltage-dependent current noise algorithm for conductance-based stochastic modelling of auditory nerve fibres
W Badenhorst, T Hanekom, JJ Hanekom
Biological cybernetics 110, 403-416, 2016
142016
Estimation of stimulus attenuation in cochlear implants
JE Smit, T Hanekom, JJ Hanekom
Journal of neuroscience methods 180 (2), 363-373, 2009
142009
Analysis of a purely conductance-based stochastic nerve fibre model as applied to compound models of populations of human auditory nerve fibres used in cochlear implant simulations
W Badenhorst, T Hanekom, JJ Hanekom
Biological Cybernetics 111 (5), 439-458, 2017
122017
Facial nerve stimulation in a post-meningitic cochlear implant user: using computational modelling as a tool to probe mechanisms and progression of complications on a case-by …
W Badenhorst, T Hanekom, L Gross, JJ Hanekom
Cochlear Implants International 22 (2), 68-79, 2021
102021
Apical Reference Stimulation: A Possible Solution to Facial Nerve Stimulation
J van der Westhuizen, T Hanekom, JJ Hanekom
Ear and Hearing 43 (4), 1189-1197, 2022
92022
Effect of characteristics of dynamic muscle contraction on crosstalk in surface electromyography recordings
S Viljoen, T Hanekom, D Farina
SAIEE Africa Research Journal 98 (1), 18-29, 2007
92007
Modelling of the electrode-auditory nerve fibre interface in cochlear prostheses
T Hanekom
University of Pretoria, 2001
92001
Initial results from a model of ephaptic excitation in the electrically excited peripheral auditory nervous system
R Jönsson, T Hanekom, JJ Hanekom
Hearing research 237 (1-2), 49-56, 2008
42008
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