Comparison of sensitivity for the perception of bodily rotation and the oculogyral illusion.
Human angular acceleration sensitivity compared using perception of bodily rotation and oculogyral illusion as indicators, discussing nature of illusion
SEARCH · Search NASA
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Human angular acceleration sensitivity compared using perception of bodily rotation and oculogyral illusion as indicators, discussing nature of illusion
Size perception illusion compared for extraneous objects in windows of Ames monocular distorted and rectangular rooms
Change in judgment of direction of gaze in humans after autokinetic perception
Human vestibular system and its connection with oculomotor system and their relation to motion perception, spatial disorientation, and illusions
Relationship between binocular depth perception and optical distortion in Apollo pressure suit helmets and visors
Temporal pattern perception by human subjects required to integrate information presented in two modalities
Psychophysical methods for determining perception threshold of angular acceleration in man during vertical rotation
Human angular acceleration sensitivity using rotation and oculogyral illusion perception as indicators, relating to spatial orientation and flight control task precision
Sensory information processing model for tactile perception using array of airjet and piezoelectric stimulators applicable to display design and nervous system investigation
Perception thresholds of rotation about three major body axes
Exposure duration effect on luminance requirements for hue perception and identification
Computer assisted teleoperator control system for making comparative performance evaluations of tactile perception
Neural mechanisms underlying visual perception, arousal, and attention processes in man, cat, and monkey
Human rotation perception, discussing man-carrying rotation device, angular acceleration threshold, etc
Thresholds comparison for angular acceleration derived by subjective cupulometry and by staircase method, determining thresholds for rotation perception and oculogyral illusion
Human response to and perception of angular acceleration, discussing implications for motion capability in flight simulator
Rotation perception in dark and oculogyral illusion, using power law to describe subjective vestibular sensation relation to angular acceleration stimulus pulses
Electromechanical system for Howard-Dolman device was developed. System is used for human depth perception measurements without tactual stimuli.