David Barrière est chargé de recherche au CNRS, où il étudie les liens entre le cerveau et les comportements chez les animaux. Son travail s’inscrit à la croisée des neurosciences, des sciences du comportement et des nouvelles technologies comme l’imagerie cérébrale et l’intelligence artificielle.

Experience

  • 2021–present
    Chargé de Recherche, CNRS
  • 2015–2020
    Chercheur associé, CEA
  • 2014–2015
    Chercheur associé, INSERM
  • 2012–2014
    Chercheur associé, Université de Sherbrooke
  • 2008–2011
    Doctorant, INSERM

Education

  • 2011 
    Université Clermont Auvergne, Doctorat de Neuroscience
  • 2007 
    Université Clermont Auvergne, Master Génétique et Physiologie
  • 2005 
    Université Clermont Auvergne, Licence Physiologie Animale & Humaine
  • 2004 
    Université Clermont Auvergne, DUT Analyses Biologiques et Biochimiques
  • 2001 
    Lycée Saint Joseph Aurillac, Baccalauréat Sciences Médico-Sociales

Publications

  • 2026
    Affiliative behaviours regulate allostasis development and shape biobehavioural trajectories in horses, Nat Commun
  • 2025
    fMRI data acquisition and analysis for task-free, anesthetized rats, Nat Protoc.
  • 2025
    How the brain adapts to nature's rhythms: a year of neuroimaging in a seasonal mammal, Neuroimage
  • 2023
    A consensus protocol for functional connectivity analysis in the rat brain, Nat Neurosci
  • 2022
    Lysophosphatidylcholine 16:0 mediates chronic joint pain associated to rheumatic diseases through acid-sensing ion channel 3, Pain
  • 2021
    Brain orchestration of pregnancy and maternal behavior in mice: A longitudinal morphometric study, Neuroimage
  • 2021
    The Class I HDAC Inhibitor, MS-275, Prevents Oxaliplatin-Induced Chronic Neuropathy and Potentiates Its Antiproliferative Activity in Mice, Int J Mol Sci.
  • 2021
    Noninvasive Assessment of Neurodevelopmental Disorders after In Utero Irradiation in Mice: An In Vivo Anatomical and Diffusion MRI Study, Radiat Res.
  • 2020
    Dichotomic effects of clinically used drugs on tumor growth, bone remodeling and pain management, Sci Rep.
  • 2019
    Structural and functional alterations in the retrosplenial cortex following neuropathic pain, Pain
  • 2019
    The development of brain magnetic resonance approaches in large animal models for preclinical research, Anim Front.
  • 2019
    The SIGMA rat brain templates and atlases for multimodal MRI data analysis and visualization, Nat Commun
  • 2019
    Paracetamol is a centrally acting analgesic using mechanisms located in the periaqueductal grey, Br J Pharmacol.
  • 2019
    In vivo magnetic resonance imaging reveals the effect of gonadal hormones on morphological and functional brain sexual dimorphisms in adult sheep, j.psyneuen
  • 2019
    A Resting-State Functional MR Imaging and Spectroscopy Study of the Dorsal Hippocampus in the Chronic Unpredictable Stress Rat Model, J Neurosci.
  • 2018
    Combination of high-fat/high-fructose diet and low-dose streptozotocin to model long-term type-2 diabetes complications, Sci Rep.
  • 2018
    Targeting the TREK-1 potassium channel via riluzole to eliminate the neuropathic and depressive-like effects of oxaliplatin, j.neuropharm.
  • 2018
    The dynamics of stress: a longitudinal MRI study of rat brain structure and connectome, Mol Psychiatry
  • 2017
    Investigation of lithium distribution in the rat brain ex vivo using lithium-7 magnetic resonance spectroscopy and imaging at 17.2 T, NMR Biomed.
  • 2013
    Fatty acid amide hydrolase-dependent generation of antinociceptive drug metabolites acting on TRPV1 in the brain, PLoS One
  • 2013
    Mammary cancer bone metastasis follow-up using multimodal small-animal MR and PET imaging, J Nucl Med.
  • 2012
    Paracetamol: a promising ancestor, Therapie
  • 2011
    Paclitaxel therapy potentiates cold hyperalgesia in streptozotocin-induced diabetic rats through enhanced mitochondrial reactive oxygen species production and TRPA1 sensitization, Pain
  • 2011
    TRPV1 in brain is involved in acetaminophen-induced antinociception, PLoS One

Contact David for

  • General
  • Media request
  • Speaking request
  • Consulting / Advising
  • Research collaboration
  • Research supervision