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Aviation, Space, and Environmental Medicine|January 1, 1983
Perceived orientation in free-fall depends on visual, postural, and architectural factorsJ R Lackner, A GraybielBrain : a Journal of Neurology|March 1, 1984
Perception of body weight and body mass at twice earth-gravity acceleration levelsJ R Lackner, A GraybielExperimental Brain Research|January 1, 1981
Illusions of postural, visual, and aircraft motion elicited by deep knee in the increased gravitoinertial force phase of parabolic flight. Evidence for dynamic sensory-motor calibration to earth gravity force levelsJ R Lackner, A GraybielAviation, Space, and Environmental Medicine|August 1, 1982
Rapid perceptual adaptation to high gravitoinertial force levels: evidence for context-specific adaptationJ R Lackner, A GraybielAviation, Space, and Environmental Medicine|January 1, 1980
A sudden-stop vestibulovisual test for rapid assessment of motion sickness manifestationsA Graybiel, J R LacknerAviation, Space, and Environmental Medicine|June 1, 1978
Some influences of touch and pressure cues on human spatial orientationJ R Lackner, A GraybielAviation, Space, and Environmental Medicine|August 1, 1983
Etiological factors in space motion sicknessJ R Lackner, A GraybielAviation, Space, and Environmental Medicine|March 1, 1980
Evaluation of the relationship between motion sickness symptomatology and blood pressure, heart rate, and body temperatureA Graybiel, J R LacknerAviation, Space, and Environmental Medicine|March 1, 1981
Variations in gravitoinertial force level affect the gain of the vestibulo-ocular reflex: implications for the etiology of space motion sicknessJ R Lackner, A GraybielAviation, Space, and Environmental Medicine|September 1, 1987
Head movements in low and high gravitoinertial force environments elicit motion sickness: implications for space motion sicknessJ R Lackner, A GraybielPageof 11