| 2011 | ||
|---|---|---|
| j14 | J. Fonollosa, A. Gutierrez-Galvez, Anders Lansner, Dominique Martinez, Jean-Pierre Rospars, R. Beccherelli, Alexandre Perera, T. Pearce, P. Vershure, Krishna Persaud, Santiago Marco: Biologically Inspired Computation for Chemical Sensing. Procedia CS 7: 226-227 (2011) | |
| 2009 | ||
| j13 | Malin Sandström, Anders Lansner, Jeanette Hellgren Kotaleski, Jean-Pierre Rospars: Modeling the response of a population of olfactory receptor neurons to an odorant. Journal of Computational Neuroscience 27(3): 337-355 (2009) | |
| j12 | Geir Halnes, Erik Ulfhielm, Emma Eklöf Ljunggren, Jeanette Hellgren Kotaleski, Jean-Pierre Rospars: Modelling and sensitivity analysis of the reactions involving receptor, G-protein and effector in vertebrate olfactory receptor neurons. Journal of Computational Neuroscience 27(3): 471-491 (2009) | |
| j11 | Yuqiao Gu, Philippe Lucas, Jean-Pierre Rospars: Computational Model of the Insect Pheromone Transduction Cascade. PLoS Computational Biology 5(3) (2009) | |
| 2008 | ||
| j10 | Lubomir Kostal, Petr Lánský, Jean-Pierre Rospars: Efficient Olfactory Coding in the Pheromone Receptor Neuron of a Moth. PLoS Computational Biology 4(4) (2008) | |
| 2007 | ||
| j9 | Jean-Pierre Rospars, Philippe Lucas, Mathieu Coppey: Modelling the early steps of transduction in insect olfactory receptor neurons. Biosystems 89(1-3): 101-109 (2007) | |
| j8 | Lubomir Kostal, Petr Lánský, Jean-Pierre Rospars: Encoding of pheromone intensity by dynamic activation of pheromone receptors. Neurocomputing 70(10-12): 1759-1763 (2007) | |
| c3 | Petr Lánský, Ondrej Pokora, Jean-Pierre Rospars: Stimulus-Response Curves in Sensory Neurons: How to Find the Stimulus Measurable with the Highest Precision. BVAI 2007: 338-349 | |
| 2002 | ||
| j7 | Henry C. Tuckwell, Frederic Y. M. Wan, Jean-Pierre Rospars: A spatial stochastic neuronal model with Ornstein-Uhlenbeck input current. Biological Cybernetics 86(2): 137-145 (2002) | |
| 2001 | ||
| j6 | Jean-Pierre Rospars, Petr Lánský, Patricia Duchamp-Viret, André Duchamp: Characterizing and modeling concentration-response curves of olfactory receptor cells. Neurocomputing 38-40: 319-325 (2001) | |
| j5 | Arthur Vermeulen, Jean-Pierre Rospars: Electrical circuitry of an insect olfactory sensillum. Neurocomputing 38-40: 1011-1017 (2001) | |
| 1998 | ||
| j4 | Arthur Vermeulen, Jean-Pierre Rospars: Dendritic Integration in Olfactory Sensory Neurons: A Steady-State Analysis of How the Neuron Structure and Neuron Environment Influence the Coding of Odor Intensity. Journal of Computational Neuroscience 5(3): 243-266 (1998) | |
| 1995 | ||
| j3 | Petr Lánský, Jean-Pierre Rospars: Ornstein-Uhlenbeck model neuron revisited. Biological Cybernetics 72(5): 397-406 (1995) | |
| c2 | Arthur Vermeulen, Jean-Pierre Rospars, Petr Lánský, Henry C. Tuckwell: Some new results on the coding of pheromone intensity in an olfactory sensory neuron. ESANN 1995 | |
| 1994 | ||
| j2 | Petr Lánský, Jean-Pierre Rospars, Arthur Vermeulen: Basic mechanisms of coding stimulus intensity in the olfactory sensory neuron. Neural Processing Letters 1(1): 9-12 (1994) | |
| c1 | Jean-Pierre Rospars, Petr Lánský: Stochastic model of odor intensity coding in first-order olfactory neurons. ESANN 1994 | |
| 1993 | ||
| j1 | Jean-Pierre Rospars, Petr Lánský: Stochastic model neuron without resetting of dendritic potential: application to the olfactory system. Biological Cybernetics 69(4): 283-294 (1993) | |
Colors in the list of coauthors
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