Biomedical Engineering Reference
In-Depth Information
96. Souman JL, Giordano PR, Schwaiger M, Frissen I, Thümmel T, Ulbrich H, De Luca A,
Bülthoff HH, Ernst MO (2011) CyberWalk: enabling unconstrained omnidirectional walking
through virtual environments. ACM Trans Appl Percept 8, Article 25
97. Stanton DEB, Wilson PN, Foreman N (2003) Human shortcut performance in a computer-
simulated maze: a comparative study. Spatial Cogn Comput 3:315-329
98. Stoffregen TA, Pittenger JB (1995) Human echolocation as a basic form of perception and
action. Ecol Psychol 7:181-216
99. Stratton G (1896) Some preliminary experiments on vision without inversion of the retinal
image. Psychol Rev 3:341-360
100. Steinicke F, Bruder G, Jerald J, Frenz H, Lappe M (2009) Estimation of detection thresholds
for redirected walking techniques. IEEE Trans Vis Comput Graph 16(1):17-27
101. St. George RJ, Fitzpatrick RC (2011) The sense of self-motion, orientation and balance
explored by vestibular stimulation. J Physiol 589:807-813
102. Sun HJ, Campos JL, Chan GSW (2004) Multisensory integration in the estimation of relative
path length. Exp Brain Res 154:246-254
103. Telford L, Howard IP, Ohmi M (1995) Heading judgments during active and passive self-
motion. Exp Brain Res 104:502-510
104. Templeman JN, Denbrook PS, Sibert LE (1999) Virtual locomotion: walking in place through
virtual environments. Presence Teleoperators Virtual Environ 8:598-619
105. Thorndyke PW, Hayes-Roth B (1982) Differences in spatial knowledge acquired from maps
and navigation. Cogn Psychol 14:560-589
106. Toet A, Jansen SEM, Delleman NJ (2007) Effects of field-of-view restrictions on speed and
accuracy of manoeuvring. Percept Motor Skills 105:1245-1256
107. Turvey MT, Carello C (1986) The ecological approach to perceiving-acting: a pictorial essay.
Acta Psychol 63:133-155
108. Van Erp JBF, Van Veen HAHC, Jansen C, Dobbins T (2005) Waypoint navigation with a
vibrotactile waist belt. ACM Trans Appl Percept 2:106-117
109. Waller D, Bachmann E, Hodgson E, Beall AC (2007) The HIVE: A Huge Immersive Virtual
Environment for research in spatial cognition. Behav Res Methods 39:835-843
110. Waller D, Greenauer N (2007) The role of body-based sensory information in the acquisition
of enduring spatial representations. Psychol Res 71:322-332
111. Waller D, Hunt E, Knapp D (1998) The transfer of spatial knowledge in virtual environment
training. Presence Teleoperators Virtual Environ 7:129-143
112. Waller D, Loomis JM, HaunDBM(2004) Body-based senses enhance knowledge of directions
in large-scale environments. Psychon Bull Rev 11:157-163
113. Waller D, Loomis JM, Steck S (2003) Inertial cues do not enhance knowledge of environmental
layout. Psychon Bull Rev 10:987-993
114. Witmer BG, Bailey JH, Knerr BW, Parsons KC (1996) Virtual spaces and real world places:
transfer of route knowledge. Int J Hum Comput Stud 45:413-428
115. Yardley L (1992) Motion sickness and perception: a reappraisal of the sensory conflict
approach. Br J Psychol 83:449-471
116. Yardley L, Higgins M (1998) Spatial updating during rotation: the role of vestibular informa-
tion and mental activity. J Vestib Res 8:435-442
117. Yost WA (2001) Auditory localization and scene perception. In: Goldstein EB (ed) Blackwell
handbook of perception. Blackwell Publishers, Malden, pp 437-468
118. Zhang H, Mou W, McNamara TP (2011) Spatial updating according to the intrinsic reference
direction of a briefly viewed layout. Cognition 119:419-429
Search WWH ::




Custom Search