A method for analyzing variations in evoked responses.
Amplitude and wave shape of averaged evoked responses in awake animals including man
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Amplitude and wave shape of averaged evoked responses in awake animals including man
Nystagmus response to linear and angular accelerations
Threshold caloric test on normal subjects - responses to hot and cold caloric stimulation
Test facility for determining human performance in very low frequency noise environment - physiological and psychological responses
Vestibular sensitivity and associated locomotor responses of rats in rotating environment
Energy transfer effects on pathophysiological responses of guinea pigs and bradycardia response in monkeys under minus G impact acceleration
Physical risk and responsibility for mission as factors in modulating heart rate in test pilots
Response of single cells in cat brain to angular acceleration in horizontal plane
Fourth-week syndrome in addition to normal medullary syndrome in DBA/2J mouse strain response to acute ionizing lethal irradiation
Visually controlled placing response tests for kittens reared without sight of limbs
Response of squirrel monkeys to high acceleration stresses
Human compensatory responses to effects on EEG AND work capacity caused by back-chest accelerations
Response patterns to tone-burst stimulation of cochlear nucleus and dependency on stimulus parameters
Adaptive cytochemical responses of hormone producing cells of rat anterior pituitary following exposure to simulated high altitude
The terrestrial gravitational field serves as an important orientation reference for human perception and movement, being continually monitored by sensory receptors in the skin, muscles, joints, and vestibular otolith organs. Cues from these graviceptors are used by the brain to estimate spatial orientation and to control balance and movement. Changes in these cues associated with the tonic changes in gravity (gravito-inertial force),during the launch and entry phases of space flight missions result in altered perceptions, degraded motor control performance, and in some cases, "motion" sickness during, and for a period of time after, the g-transitions. In response to these transitions, however, physiological and behavioral response mechanisms are triggered to compensate for altered graviceptor cues and/or to adapt to the new sensory environment. Basic research in the neurophysiology discipline is focused on understanding the characteristic features of and the underlying mechanisms for the normal human response to tonic changes in the gravito-inertial force environment. These studies address fundamental questions regarding the role of graviceptors in orientation and movement in the terrestrial environment, as well as the capacity, specificity, and modes for neural plasticity in the sensory-motor and perceptual systems of the brain. At the 2001 workshop basic research studies were presented addressing: neuroanatomical responses to altered gravity environments, the neural mechanisms for resolving the ambiguity between tilting and translational stimuli in otolith organ sensory input, interactions between the vestibular system and the autonomic nervous system , the roles of haptic and visual cues in spatial orientation, mechanisms for training environment-appropriate sensorimotor responses triggered by environment-specific context cues, and studies of sensori-motor control of posture and locomotion in the terrestrial environment with and without recent exposure to space flight. Building on these basic research studies are more applied studies focused on the development of countermeasures to the untoward neurophysiological responses to space flight. At the 2001 workshop, applied research studies were presented addressing issues related to the use of rotational artificial gravity (centripetal acceleration) as a multisystem (bone, muscle, cardiovascular, and, perhaps, neurovestibular) countermeasure. Also presented was a clinical study reporting on a new rating system for clinical evaluation of postflight functional neurological status.
Discharge patterns of single fibers in cat auditory nerve in response to controlled acoustic stimuli
Effect of unilateral renal vasodilatation on sodium excretion by infusing acetylcholine into renal artery of dogs
Psychophysiological responses in humans to low frequency pressure oscillations