A revised dynamic otolith model.
Dynamic otolith model based on input-output experiments, including static component to permit steady output to acceleration or sustained tilt
Engineering topics
Publications and source records attributed to Young, L. R..
Dynamic otolith model based on input-output experiments, including static component to permit steady output to acceleration or sustained tilt
Physical properties of labyrinthine fluids and semicircular canal response to angular and linear acceleration and thermal stimulation
Control theory applied to analysis of vestibular function for obtaining mathematical model of semicircular canals and otolith organs
Linear acceleration influence on vestibular nystagmus and postulation of simple model based on otolith contribution
Physical properties of labyrinthine fluids, and caloric stimulation of semicircular canals
Inverted pendulum and VTOL control experiments with and without motion cues, discussing various motion effects
Three-dimensional contact analog display system development for use in surface, subsurface, air, and space vehicles
Analytical model of canalicular response to rotation in linear acceleration fields
Feasibility of noninvasive venous pressure measuring methods during weightlessness
Physical properties of labyrinth fluids in human vestibular system
Human dynamic space orientation models using control theory techniques
Closed loop, manual, time optimal, bang bang control of high order systems using concept of switching surface
Physiological, behavioral, and control investigation of rapid saccadic jump eye movement in humans
Critical review and evaluation of biological control systems in humans
Human dynamic space orientation using control theory techniques
Control engineering approaches to study of vestibular organs and human orientation in space
Effects of motion cues on manual tracking ability of pilots