Spaceflight microgravity and underwater neutral buoyancy produce identical physiological effects on humans
Evidence indicates that spaceflight microgravity and underwater neutral buoyancy do not produce identical physiological or perceptual effects, as neutral buoyancy leaves vestibular cues intact and fails to replicate several key adaptations seen in actual microgravity.
The retrieved literature comparing neutral buoyancy to microgravity explicitly points out limitations and differences, noting that neutral buoyancy removes somatosensory cues while leaving vestibular cues intact and fails to adequately simulate the perceptual and physiological consequences of true microgravity.
Nils-Alexander Bury, Michael Jenkin, Robert S. Allison, Rainer Herpers, Laurence R. Harris. Vection underwater illustrates the limitations of neutral buoyancy as a microgravity analog. 2023. https://doi.org/10.1038/s41526-023-00282-3
Paper [1] demonstrates that neutral buoyancy fails to replicate key microgravity-induced perceptual effects (such as changes in linear vection), indicating limitations as a microgravity analog.
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Heather Jenkin, Michael Jenkin, Laurence R. Harris, Rainer Herpers. Neutral buoyancy and the static perception of upright. 2023. https://doi.org/10.1038/s41526-023-00296-x
Paper [2] finds that short-duration neutral buoyancy is a weak analog for microgravity exposure, showing no significant changes in the relative weighting of spatial orientation cues compared to actual long-duration spaceflight.
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