Visual Acuity Using Head-fixed Displays During Passive Self and Surround MotionThe ability to read head-fixed displays on various motion platforms requires the suppression of vestibulo-ocular reflexes. This study examined dynamic visual acuity while viewing a head-fixed display during different self and surround rotation conditions. Twelve healthy subjects were asked to report the orientation of Landolt C optotypes presented on a micro-display fixed to a rotating chair at 50 cm distance. Acuity thresholds were determined by the lowest size at which the subjects correctly identified 3 of 5 optotype orientations at peak velocity. Visual acuity was compared across four different conditions, each tested at 0.05 and 0.4 Hz (peak amplitude of 57 deg/s). The four conditions included: subject rotated in semi-darkness (i.e., limited to background illumination of the display), subject stationary while visual scene rotated, subject rotated around a stationary visual background, and both subject and visual scene rotated together. Visual acuity performance was greatest when the subject rotated around a stationary visual background; i.e., when both vestibular and visual inputs provided concordant information about the motion. Visual acuity performance was most reduced when the subject and visual scene rotated together; i.e., when the visual scene provided discordant information about the motion. Ranges of 4-5 logMAR step sizes across the conditions indicated the acuity task was sufficient to discriminate visual performance levels. The background visual scene can influence the ability to read head-fixed displays during passive motion disturbances. Dynamic visual acuity using head-fixed displays can provide an operationally relevant screening tool for visual performance during exposure to novel acceleration environments.
Document ID
20070016705
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Wood, Scott J. (NASA Johnson Space Center Houston, TX, United States)
Black, F. Owen (Legacy Health System Portland, OR, United States)
Stallings, Valerie (Legacy Health System Portland, OR, United States)
Peters, Brian (Wyle Labs., Inc. Houston, TX, United States)
Date Acquired
August 23, 2013
Publication Date
May 1, 2007
Subject Category
Aerospace Medicine
Meeting Information
Meeting: 78th Annual Scientific Meeting of the Aerospace Medical Association