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Publications

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Jacob PY, Van Cauter T, Poucet B, et al. (2020) Medial entorhinal cortex lesions induce degradation of CA1 place cell firing stability when self-motion information is used. Brain and Neuroscience Advances. 4: 2398212820953004
Jacob PY, Capitano F, Poucet B, et al. (2019) Path integration maintains spatial periodicity of grid cell firing in a 1D circular track. Nature Communications. 10: 840
Gaussier P, Banquet JP, Cuperlier N, et al. (2019) Merging information in the entorhinal cortex: what can we learn from robotics experiments and modeling? The Journal of Experimental Biology. 222
Martineau FS, Fournier L, Buhler E, et al. (2019) Spared cognitive and behavioral functions prior to epilepsy onset in a rat model of subcortical band heteropia. Brain Research
Save E, Sargolini F. (2017) Disentangling the Role of the MEC and LEC in the Processing of Spatial and Non-Spatial Information: Contribution of Lesion Studies. Frontiers in Systems Neuroscience. 11: 81
Jacob PY, Gordillo-Salas M, Facchini J, et al. (2017) Medial entorhinal cortex and medial septum contribute to self-motion-based linear distance estimation. Brain Structure & Function
Rodo C, Sargolini F, Save E. (2016) Processing of spatial and non-spatial information in rats with lesions of the medial and lateral entorhinal cortex: environmental complexity matters. Behavioural Brain Research
Hok V, Poucet B, Duvelle É, et al. (2016) Spatial cognition in mice and rats: similarities and differences in brain and behavior. Wiley Interdisciplinary Reviews. Cognitive Science
Poucet B, Chaillan F, Truchet B, et al. (2015) Is there a pilot in the brain? Contribution of the self-positioning system to spatial navigation. Frontiers in Behavioral Neuroscience. 9: 292
Jacob PY, Poucet B, Liberge M, et al. (2014) Vestibular control of entorhinal cortex activity in spatial navigation. Frontiers in Integrative Neuroscience. 8: 38
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