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Journal of Neurophysiology|August 15, 1998
Gravitoinertial force background level affects adaptation to coriolis force perturbations of reaching movementsJ R Lackner, P DizioPerceptual and Motor Skills|June 1, 1989
Altered sensory-motor control of the head as an etiological factor in space-motion sicknessJ R Lackner, P DiZioBrain Research|October 2, 1992
Gravitoinertial force level affects the appreciation of limb position during muscle vibrationJ R Lackner, P DiZioJournal of Neurophysiology|February 13, 2001
Coriolis-force-induced trajectory and endpoint deviations in the reaching movements of labyrinthine-defective subjectsP DiZio, J R LacknerVision Research|January 1, 1992
Influence of gravitoinertial force level on vestibular and visual velocity storage in yaw and pitchP Dizio, J R LacknerAviation, Space, and Environmental Medicine|March 1, 1991
Decreased susceptibility to motion sickness during exposure to visual inversion in microgravityJ R Lackner, P DiZioJournal of Gerontology|May 1, 1990
Age differences in oculomotor responses to step changes in body velocity and visual surround velocityP DiZio, J R LacknerExperimental Brain Research|January 1, 1990
Sensory-motor factors triggering the suppression of post-rotary vestibular responses in different gravitoinertial force backgroundsP DiZio, J R LacknerJournal of Neurophysiology|October 1, 1995
Motor adaptation to Coriolis force perturbations of reaching movements: endpoint but not trajectory adaptation transfers to the nonexposed armP Dizio, J R LacknerJournal of Neurophysiology|October 12, 2000
Congenitally blind individuals rapidly adapt to coriolis force perturbations of their reaching movementsP DiZio, J R LacknerPageof 11