Difference: TMJV2 (r5 vs. r4)

r5 - 13 Aug 2018 - 10:08 - Main.tmjv2 r4 - 10 May 2018 - 11:55 - Main.tmjv2

Tomas Van Pottelbergh

Tomas Van Pottelbergh

Background - Research - Publications

Background - Research - Publications

Position: PhD student

Position: PhD student

Office Location: BN4-85

Office Location: BN4-85

E-mail: tmjv2 [at] cam.ac.uk

E-mail: tmjv2 [at] cam.ac.uk

Thesis Title: Linking the balance in single neurons and neural networks

Thesis Title: Linking the balance in single neurons and neural networks

Supervisor: Professor Rodolphe Sepulchre

Supervisor: Professor Rodolphe Sepulchre

Background

Background

2013: BSc Electrical Engineering (KU Leuven, Belgium)

2013: BSc Electrical Engineering (KU Leuven, Belgium)

2015: MSc Mathematical Engineering (KU Leuven, Belgium)
Dissertation: Effects of Refractoriness and Adaptation on the Dynamics of Neuronal Populations
Supervisors: Bart De Moor (KU Leuven), Moritz Deger and Wulfram Gerstner (EPFL)

2015: MSc Mathematical Engineering (KU Leuven, Belgium)
Dissertation: Effects of Refractoriness and Adaptation on the Dynamics of Neuronal Populations
Supervisors: Bart De Moor (KU Leuven), Moritz Deger and Wulfram Gerstner (EPFL)

Research Interests

Research Interests

Single neuron dynamics, neural network dynamics, integrate-and-fire models, neuromodulation, balanced networks

Single neuron dynamics, neural network dynamics, integrate-and-fire models, neuromodulation, balanced networks

Publications

Publications

  

Conference Posters

  

Van Pottelbergh T, Sepulchre R. Reduction of conductance-based neuron models for neuromodulation studies. 27th Annual Computational Neuroscience Meeting (CNS*2018)

Conference Presentations

Conference Presentations

  

Van Pottelbergh T, Drion G, Sepulchre R. Phase plane modelling from voltage clamp experiments, 4th International Conference on Mathematical Neuroscience (ICMNS 2018)

Van Pottelbergh T, Sepulchre R. Can integrate-and-fire models simulate robust neuromodulation? 26th Annual Computational Neuroscience Meeting (CNS*2017): Part 1. BMC Neuroscience. 2017;18(Suppl 1):O2. doi:10.1186/s12868-017-0370-3.

Van Pottelbergh T, Sepulchre R. Can integrate-and-fire models simulate robust neuromodulation? 26th Annual Computational Neuroscience Meeting (CNS*2017): Part 1. BMC Neuroscience. 2017;18(Suppl 1):O2. doi:10.1186/s12868-017-0370-3.

Journal Articles

Journal Articles

Van Pottelbergh T, Drion G, Sepulchre R. Robust modulation of integrate-and-fire models. Neural Computation. 2018 Apr;30(4):987-1011. doi:10.1162/neco_a_01065

Van Pottelbergh T, Drion G, Sepulchre R. Robust modulation of integrate-and-fire models. Neural Computation. 2018 Apr;30(4):987-1011. doi:10.1162/neco_a_01065

r5 - 13 Aug 2018 - 10:08 - Main.tmjv2 r4 - 10 May 2018 - 11:55 - Main.tmjv2

View topic | View difference interwoven | History: r5 < r4 < r3 < r2 | More topic actions
 
No permission to view System.WebBottomBarExample