BEGIN:VCALENDAR
VERSION:2.0
PRODID:-//Bordeaux Neurocampus - ECPv4.9.10//NONSGML v1.0//EN
CALSCALE:GREGORIAN
METHOD:PUBLISH
X-WR-CALNAME:Bordeaux Neurocampus
X-ORIGINAL-URL:https://www.bordeaux-neurocampus.fr/en/
X-WR-CALDESC:Events for Bordeaux Neurocampus
BEGIN:VTIMEZONE
TZID:Europe/Paris
BEGIN:DAYLIGHT
TZOFFSETFROM:+0100
TZOFFSETTO:+0200
TZNAME:CEST
DTSTART:20260329T010000
END:DAYLIGHT
BEGIN:STANDARD
TZOFFSETFROM:+0200
TZOFFSETTO:+0100
TZNAME:CET
DTSTART:20261025T010000
END:STANDARD
END:VTIMEZONE
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260923T093000
DTEND;TZID=Europe/Paris:20260923T093000
DTSTAMP:20260827T103920
CREATED:20260827T082334Z
LAST-MODIFIED:20260827T091330Z
UID:205346-1790155800-1790155800@www.bordeaux-neurocampus.fr
SUMMARY:Thesis defense - Tess Bonnard
DESCRIPTION:Venue: BBS \nDefense in french \n\nTess Bonnard\nINCIA \nTitle\nVestibular integration in modified gravity and motion sickness \nAbstract\nMotion sickness arises from conflicts between sensory signals\, particularly those originating from the vestibular system. However\, its underlying mechanisms remain poorly understood\, especially in the case of space motion sickness\, which affects astronauts during exposure to weightlessness. \nThis thesis compares space motion sickness\, reproduced during parabolic flights\, with terrestrial motion sickness induced by virtual reality. It investigates the associated sensory conflicts and physiological responses. \nVestibular perception of rotational movements is impaired in weightlessness\, whereas the perception of translational movements remains accurate. In the presence of sensory conflict\, the sensory input signaling motion appears to be weighted more strongly than the others during the integration and comparison of sensory signals. Sleep quality influences susceptibility to space motion sickness\, and facial colorimetry emerges as an objective indicator of symptom severity. \nThese findings contribute to a better understanding of the mechanisms underlying motion sickness and provide new perspectives for the development of preventive strategies. \nPublications\n\nBonnard\, T.\, Doat\, E.\, Cazalets\, J.\, Guehl\, D.\, & Guillaud\, E. (2025). Visual and vestibular reweighting after cyber‐ and space‐sickness. Experimental Physiology\, 111(1)\, 240‑256. https://doi.org/10.1113/ep092966\nBonnard\, T.\, Morello\, A.\, Doat\, E.\, Cazalets\, J.\, Guehl\, D.\, & Guillaud\, E. (2026). Resilience of otolithic reflex to gravitational changes. Npj Microgravity\, 12(1). https://doi.org/10.1038/s41526-026-00599-9\nBonnard\, T.\, Araka\, L.\, Reina\, A. S.\, Van Berkel\, J.\, Morvan\, C.\, Morgat\, C.\, Guehl\, D.\, Guillaud\, E.\, & Altena\, E. (2026). Sleep’s influence on susceptibility to motion sickness in parabolic flights and virtual reality : An exploratory study. Journal Of Vestibular Research\, 9574271261474571. https://doi.org/10.1177/09574271261474571\nBonnard\, T.\, Doat\, E.\, Cazalets\, J.\, Morgat\, C.\, Guehl\, D.\, & Guillaud\, E. (2026). Turning green in microgravity : facial color changes as best physiological indicator of space sickness. bioRxiv (Cold Spring Harbor Laboratory). https://doi.org/10.64898/2026.03.06.708504\nBonnard\, T.\, Doat\, E.\, Guehl\, D.\, & Guillaud\, E. (2026). Swung and spun in weightlessness : Evidence of immediate canalar underdetection of rotations in parabolic flight. bioRxiv (Cold Spring Harbor Laboratory). https://doi.org/10.64898/2026.06.30.735470\n\nJury\n\nM. Etienne Guillaud – CNRS – Directeur de thèse\nMme Gaelle Quark – Université de Caen – Rapporteure\nM. Lionel Bringoux – Université Aix Marseille – Rapporteur\nMme Guillemette Gauquelin-Koch – Centre national d’études spatiales (CNES) – Examinatrice\nMme Valérie Franco-Vidal – Centre universitaire hospitalier de Bordeaux – Examinatrice\nM. Jordan Navarro – Université Lumière Lyon 2 – Examinateur\n\n
URL:https://www.bordeaux-neurocampus.fr/en/event/thesis-defense-tess-bonnard/
CATEGORIES:Thesis
END:VEVENT
END:VCALENDAR