Profil

Fyon Arthur

Dép. d'électric., électron. et informat. (Inst.Montefiore) > Systèmes et modélisation

Montefiore Institute

See author's contact details
ORCID
0009-0008-0771-8767
Main Referenced Co-authors
Drion, Guillaume  (17)
Franci, Alessio  (8)
Jehasse, Kevin  (4)
Seutin, Vincent  (4)
Brandoit, Julien  (3)
Main Referenced Keywords
Neuromodulation (6); conductance-based model (4); Computational neuroscience (3); Mathematics - Dynamical Systems (3); Quantitative Biology - Neurons and Cognition (3);
Main Referenced Unit & Research Centers
Montefiore Institute - Montefiore Institute of Electrical Engineering and Computer Science - ULiège (2)
Main Referenced Disciplines
Engineering, computing & technology: Multidisciplinary, general & others (12)
Electrical & electronics engineering (2)
Neurology (2)
Anatomy (cytology, histology, embryology...) & physiology (2)
Biochemistry, biophysics & molecular biology (1)

Publications (total 18)

The most downloaded
159 downloads
Fyon, A. (2025). Uncovering the molecular and cellular mechanisms of reliable neuromodulation in highly heterogeneous neurons [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/325229 https://hdl.handle.net/2268/325229

The most cited

4 citations (OpenAlex)

Fyon, A., Franci, A., Sacré, P., & Drion, G. (2024). Dimensionality reduction of neuronal degeneracy reveals two interfering physiological mechanisms. PNAS Nexus. doi:10.1093/pnasnexus/pgae415 https://hdl.handle.net/2268/317221

Fyon, A., Mendolia, L., Franci, A., & Drion, G. (in press). Tunable Current-Mode Bistable Switching Circuit.

Fyon, A., Pavlova, O., Schaar, N., Mesirca, P., Brandoit, J., Ringlet, S., Franci, A., Mangoni, M., Roeper, J., Drion, G.* , Seutin, V.* , & Jehasse, K.*. (28 November 2025). A tiny and fast current as common generator for regular slow pacemaking in brain and heart [Paper presentation]. Autumn Meeting of the Belgian Society of Physiology and Pharmacology, Bruxelles, Belgium.
Editorial reviewed
* These authors have contributed equally to this work.

Fyon, A., Pavlova, O., Ringlet, S., Franci, A., Mesirca Pietro, Mangoni Matteo, Schaar Nick, Roeper Jochen, Seutin, V.* , Drion, G.* , & Jehasse, K.*. (16 November 2025). Slow pacemaking dynamics from fast activating kinetics in midbrain dopamine neurons [Poster presentation]. Neuroscience 2025, San Diego, United States - California.
Peer reviewed
* These authors have contributed equally to this work.

Brandoit, J., Ernst, D., Drion, G.* , & Fyon, A.*. (2025). Fast reconstruction of degenerate populations of conductance-based neuron models from spike times. (v1). ORBi-University of Liège. https://orbi.uliege.be/handle/2268/335923. doi:10.48550/arXiv.2509.12783
* These authors have contributed equally to this work.

Fyon, A., Pavlova, O., Schaar, N., Ringlet, S., Franci, A., Mesirca, P., Mangoni, M., Roeper, J., Drion, G.* , Seutin, V.* , & Jehasse, K.*. (15 September 2025). Slow dynamics from fast activating kinetics in pacemaker cells [Poster presentation]. 34th Ion channels meeting, Sète, France.
Peer reviewed
* These authors have contributed equally to this work.

Fyon, A., & Drion, G. (20 March 2025). Neuromodulation and homeostasis: complementary controllers for robust neural function [Paper presentation]. 44th Benelux Meeting on Systems and Control, Egmond Aan Zee, Netherlands.
Editorial reviewed

Fyon, A. (2025). Uncovering the molecular and cellular mechanisms of reliable neuromodulation in highly heterogeneous neurons [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/325229

Brandoit, J., Ernst, D., Drion, G.* , & Fyon, A.*. (2025). Fast reconstruction of degenerate populations of conductance-based neuron models from spike times using deep learning [Paper presentation]. NeurIPS 2025 - Workshop : Data on the Brain & Mind, San Diego, United States.
Peer reviewed
* These authors have contributed equally to this work.

Fyon, A.* , Mendolia, L.* , Redouté, J.-M., Franci, A., & Drion, G. (2025). A Fully Tunable Ultra-Low-Power Unipolar Current-Mode Schmitt Trigger in CMOS Technology. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/338452.
* These authors have contributed equally to this work.

Jehasse, K.* , Fyon, A.* , Mesirca, P., Torre, E., Mangoni, M., Drion, G.* , & Seutin, V.*. (29 November 2024). An experiment-based robust model for slow pacemaking [Paper presentation]. Autumn Meeting of the Belgian Society of Physiology and Pharmacology.
* These authors have contributed equally to this work.

Fyon, A., Franci, A., Sacré, P., & Drion, G. (2024). Dimensionality reduction of neuronal degeneracy reveals two interfering physiological mechanisms. PNAS Nexus. doi:10.1093/pnasnexus/pgae415
Peer Reviewed verified by ORBi

Fyon, A., & Drion, G. (2024). An adaptive controller of reliable neuromodulation on mixed feedback systems [Paper presentation]. 43RD BENELUX MEETING ON SYSTEMS AND CONTROL, Blankenberge, Belgium.
Peer reviewed

Fyon, A., & Drion, G. (2024). Neuromodulation robustly tunes rhythmic patterns in a fixed connectome: application to gait control [Poster presentation]. FENS Forum 2024, Vienna, Austria.
Editorial reviewed

Fyon, A., & Drion, G. (2024). Neuromodulation and homeostasis: complementary mechanisms for robust neural function. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/325079.

Fyon, A., & Drion, G. (September 2023). Neuromodulation and Homeostasis: Complementary Mechanisms in Ion Channel Expression Adaptation for Robust Neural Function [Poster presentation]. Bernstein Conference 2023, Berlin, Germany.
Editorial reviewed

Fyon, A., Sacré, P., Franci, A., & Drion, G. (2023). Reliable neuromodulation from adaptive control of ion channel expression. IFAC-PapersOnLine, 56 (2), 458-463. doi:10.1016/j.ifacol.2023.10.1610
Peer Reviewed verified by ORBi

Fyon, A., Sacré, P., Franci, A., & Drion, G. (2023). Reliable neuromodulation from adaptive control of ion channel expression [Paper presentation]. IFAC World Congress, Yokohama, Japan.
Peer reviewed

Fyon, A., & Drion, G. (November 2021). Apparent neuromodulation-dependent correlation levels in neuron ion channel expression result from a competition between passive and active membrane properties [Poster presentation]. Society for Neuroscience annual meeting 2021.
Editorial reviewed

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