Search PubMed⌕ Search

Biomedical subjects

N Groleau

Publications and source records attributed to N Groleau.

3 recordsLinked to original sources

Tactile influences on astronaut visual spatial orientation: human neurovestibular studies on SLS-2.

Human spatial orientation in spaceflight is initially disturbed by the absence of usable graviceptor information from the otolithic organs. Experiments measuring astronaut visually induced motion (vection) strength on various flight days during the first 10 days of the Spacelab Life Sciences-2 mission demonstrated two new phenomena in addition to confirming the initial increased weighting of visual and localized tactile cues. The reliance on tactile and visual noninertial cues apparently declined after a week in space, as the crew became able to utilize their internal reference frame. Subjects also showed that even nondirectional tactile cues served as a direction anchor and inhibited visually induced roll sensation relative to a new loosely tethered test condition. Individual perceptual styles were again revealed among the four astronauts tested. The readaptation to 1 G similarly shows a period of reinterpretation of inertial and visual cues to spatial orientation. The results are discussed in terms of an internal-model representation of body orientation, with time-varying weights applied to extrinsic and intrinsic signals.

Adult↗

Spatial orientation and posture during and following weightlessness: human experiments on Spacelab Life Sciences 1.

The 4 payload crew members of the Spacelab Life Sciences 9-day space flight in 1991 were subjected to limited vestibular testing in flight as well as pre and post flight. Major differences in individual "perceptual style" appeared in their reaction to the visual-vestibular stimuli in the rotating dome experiment, and especially in the extent to which nondirectional tactile cues served to anchor the subjective vertical and body postural reactions. The ability of subjects to point to remembered target positions was degraded in space, which produced a tendency to point low in some subjects in flight. The eye movements and subjective response to sudden stops and head pitching following continuous spinning (dumping) were measured both in space and on the ground. Although subjective duration of inflight rotation for the dumping tests was shorter than that for the preflight tests, the postrotatory nystagmus, with or without head pitch, was lengthened in time constant relative to preflight. Ground tests, in addition to the flight experiments, investigated the changes following weightlessness in subjective and oculomotor reactions to whole body tilt, the ability to balance with eyes open and closed; leg muscles strength and stamina as related to posture; visual field dependence; and the perceptual and oculomotor reactions to horizontal linear acceleration. Several of these tests, as well as post-flight measures of motion sickness susceptibility, revealed subtle evidence of neurovestibular alterations that lasted a week or more following the 10-day orbital exposure.

Adaptation, Physiological↗