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Article type: Research Article
Authors: Chelette, Tamara L.a; * | Martin, Eric J.b | Albery, William B.a
Affiliations: [a] Armstrong Laboratory, Wright-Patterson Air Force Base, Ohio | [b] Systems Research Laboratories, Inc., Dayton, Ohio
Note: [*] Reprint address: Tamara L. Chelette, Armstrong Laboratory, ALlCFBS Bldg. 29, 2245 Monahan Way, Wright-Patterson Air Force Base, OH 45433-7008.
Abstract: The effect of head tilt on the perception of self-orientation while in a greater than one G environment was studied in nine subjects using the Armstrong Laboratory Dynamic Environment Simulator. After a 12-s stabilization period at a constant head tilt and G level, subjects reported their perception of the horizon by placing their right hand in a position they believed to be horizontal. Head tilt conditions ranged from -30° to +45° pitch over each of three head yaw positions. G levels ranged from one to four and were in the longitudinal axis of the body (Gz). Hand position was recorded in both the pitch and roll body axes. A function of head tilt did improve the fit of a multiple regression model to the collected data in both the pitch and roll axes (P < .05). The best fit was accomplished with a nonlinear function of G and head pitch. When the head remained level but the environment tilted with respect to the G vector (at angles similar to those perceived during head tilt), subjects accurately reported the environmental tilt. Head tilt under G can result in vestibular-based illusionary perception of environmental tilt. Actual environmental tilt is accurately perceived due to added channels of haptic information.
Keywords: spatial orientation, tilt perception, G-excess illusion, regression model
DOI: 10.3233/VES-1995-5101
Journal: Journal of Vestibular Research, vol. 5, no. 1, pp. 1-17, 1995
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