MITNYS - A hybrid program for on-line analysis of nystagmus
Hybrid computer program for data reduction or on-line analysis of nystagmus during closed loop experiment involving visual and/or vestibular function
Engineering topics
Publications and source records attributed to Young, L. R..
Hybrid computer program for data reduction or on-line analysis of nystagmus during closed loop experiment involving visual and/or vestibular function
Rapid saccadic and smooth pursuit tracking eye movement systems characteristics
Biophysical evaluation of human vestibular system for aerospace applications
Human dynamic space orientation using techniques of control theory
Mathematical model for vestibular adaptation to horizontal rotation
Vestibular system semicircular canals mathematical model determination of galvanic stimulation and directional preponderance, considering visual, postural and vehicle orientation feedback loops
Vestibular system functions physical analog model, predicting responses to motion inputs and possible problems for flight situations
Survey reports on life support, extravehicular, and water recovery systems
Optical eye oximeter for measuring oxygen of choroidal blood for monitoring brain oxygen supply
Mathematical model for vestibular nystagmus adaptation to subjective sensation of rotation, noting time constants
Adaptive manual control rapid variation determined by input, controlled element, task and programmed adaptation systems, discussing human strategy changes
Biophysical evaluation of human vestibular system
Human dynamic space orientation using control theory techniques
Mathematical models of human vestibular system for dynamic space orientation, using control theory
Biotechnological requirements for life support systems
Mathematical input-output model for vestibular system, relating linear and angular motions to nonvisual perception of orientation, motion and nystagmus for physiological characteristics
Roll-motion cues for man-vehicle control in compensatory tracking task with disturbance input
Human dynamic space orientation using techniques of control theory