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Decreased otolith-mediated vestibular response in 25 astronauts induced by long duration spaceflight

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posted on 2022-10-12, 02:28 authored by E Hallgren, L Kornilova, E Fransen, D Glukhikh, Steven MooreSteven Moore, G Clément, A Van Ombergen, H MacDougall, I Naumov, FL Wuyts
The information coming from the vestibular otolith organs is important for the brain when reflexively making appropriate visual and spinal corrections to maintain balance. Symptoms related to failed balance control and navigation are commonly observed in astronauts returning from space. To investigate the effect of microgravity exposure on the otoliths, we studied the otolith-mediated responses elicited by centrifugation in a group of 25 astronauts before and after 6 mo of spaceflight. Ocular counterrolling (OCR) is an otolith-driven reflex that is sensitive to head tilt with regard to gravity and tilts of the gravito-inertial acceleration vector during centrifugation. When comparing pre- and postflight OCR, we found a statistically significant decrease of the OCR response upon return. Nine days after return, the OCR was back at preflight level, indicating a full recovery. Our large study sample allows for more general physiological conclusions about the effect of prolonged microgravity on the otolith system. A deconditioned otolith system is thought to be the cause of several of the negative effects seen in returning astronauts, such as spatial disorientation and orthostatic intolerance. This knowledge should be taken into account for future long-term space missions.

Funding

Other

History

Volume

115

Issue

6

Start Page

3045

End Page

3051

Number of Pages

7

eISSN

1522-1598

ISSN

0022-3077

Publisher

American Physiological Society, USA

Additional Rights

Journal web site indicates Free Access to the paper

Peer Reviewed

  • Yes

Open Access

  • Yes

External Author Affiliations

University of Antwerp; International Space University; University of Sydney; State Research Centre of the Russian Federation;

Era Eligible

  • Yes

Journal

Journal of Neurophysiology

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