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Neuro-Vestibular Examination During and Following Spaceflight (Vestibular Health)BACKGROUND
Adaptation to microgravity during spaceflight causes neurological disturbances that are either directly or indirectly mediated by the vestibular system. These disturbances can include space motion sickness, spatial disorientation, and cognitive impairment, as well as changes in head-eye coordination, vestibulo-ocular reflexes, and control of posture and locomotion. Otolith-mediated reflex gains appear to adapt rapidly during spaceflight and after landing. However, animal studies have shown that structural modifications of the vestibular sensory apparatus develop during long-duration spaceflight. To date, no studies have characterized the severity of vestibular syndromes experienced by astronauts as a function of the duration of spaceflight or whether the effects are caused by changes at the peripheral end organs, midbrain, cerebellum, or vestibular cortex.

OBJECTIVES
We are investigating temporal vestibular changes in crewmembers of short, 6-month, and one-year missions to identify trends in adaptation of vestibular health and performance in orbit and after landing. We are also differentiating between peripheral and central vestibular forms of vertigo and oculomotor disorders.

METHODS
Recordings of eye, head, and body movements, as well as subjective reports of perception of motion, are being used to determine the presence of abnormal eye movements, dysmetria, motion sickness symptoms, and illusions of motion during head or body movements. This includes characterization of temporal trends in central compensation for vestibular (otolith) asymmetry. In-flight examinations are being performed early in the mission (Flight Days 1 and 30) and once every 2-3 months thereafter. Postflight examinations are performed after return (R) from the mission on R+0, R+4, R+9, and R+30. The inflight and postflight motion sickness questionnaires are customized to support data sharing across related studies. Ground-based control testing has been performed on healthy volunteers(18 females, 14 males;38.6 ± 9.2 years) in the laboratory to estimate mean normative responses, and on patients with bilateral vestibulopathy (BVP) (17 females, 13 males; 60.6 ± 13.0 years) at the University of Caen.

RESULTS
As of September 2024, two crewmembers have completed all preflight, inflight, and postflight testing. Additional crewmembers are currently enrolled and data collection is currently ongoing. For ground testing, BVP patients performed similarly to previous postflight astronauts on R+0 in various walking performance tasks. Three additional body movement perception tasks have been tested. For the Triangle Completion Task, BVP patients had a larger mean angle of deviation and longer mean distance than healthy controls. For the Self-Rotation Task and Distance Perception Task, BVP patients had larger errors than healthy controls. These data suggest that vestibular deficiencies impact all aspects of body movement perception tested; whereas previous studies suggest that vestibular deficiencies are only associated with directional errors, not with overall trajectories/path lengths. These data will be compared to those of crewmembers during early postflight readaptation.

RELEVANCE
If the observed symptoms in crewmembers are more deleterious after the year-long missions than those documented after 6-month missions, then relevant countermeasures will be required to maintain the health and operational performance of astronauts during longer missions. Depending on the etiology of the vestibular syndrome revealed by these tests, countermeasures will be proposed based on vestibular rehabilitation therapies currently used in patients with vestibular disorders, such as habituation, gaze stabilization, and/or balance training exercises.

ACKNOWLEDGEMENT
This work is supported by NASA’s Human Research Program Human Health Countermeasures Element.
Document ID
20240012137
Acquisition Source
Johnson Space Center
Document Type
Abstract
Authors
T R Macaulay
(KBR (United States) Houston, Texas, United States)
O Kuldavletova
(Centre Hospitalier Universitaire de Caen Caen, France)
P Denise
(Université de Caen Normandie Caen, France)
S J Wood
(Johnson Space Center Houston, United States)
M F Reschke
(Johnson Space Center Houston, United States)
Y E De Dios
(KBR (United States) Houston, Texas, United States)
J P Dervay
(Johnson Space Center Houston, United States)
T Makishima
(The University of Texas Medical Branch at Galveston Galveston, Texas, United States)
M C Schubert ORCID
(Johns Hopkins University School of Medicine Baltimore, United States)
M Shelhamer
(Johns Hopkins University School of Medicine Baltimore, United States)
A Kheradmand
(Johns Hopkins University School of Medicine Baltimore, United States)
G R Clement
(Université de Caen Normandie Caen, France)
Date Acquired
September 23, 2024
Subject Category
Aerospace Medicine
Meeting Information
Meeting: Human Research Program Investigators' Workshop (HRP IWS)
Location: Galveston, TX
Country: US
Start Date: January 28, 2025
End Date: January 31, 2025
Sponsors: National Aeronautics and Space Administration
Funding Number(s)
WBS: 10449.2.03.07.65.1021
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
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