Updating egocentric representations in human navigation
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[1] E. Tolman. Cognitive maps in rats and men. , 1948, Psychological review.
[2] Albert C. Stevens,et al. Distortions in judged spatial relations , 1978, Cognitive Psychology.
[3] R. Passingham. The hippocampus as a cognitive map J. O'Keefe & L. Nadel, Oxford University Press, Oxford (1978). 570 pp., £25.00 , 1979, Neuroscience.
[4] E. Batschelet. Circular statistics in biology , 1981 .
[5] R. Sutherland,et al. Place navigation by rats in a swimming pool. , 1984 .
[6] T. McNamara. Mental representations of spatial relations , 1986, Cognitive Psychology.
[7] R. Muller,et al. The effects of changes in the environment on the spatial firing of hippocampal complex-spike cells , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[8] Sholl Mj. Cognitive maps as orienting schemata. , 1987 .
[9] M. Sholl. Cognitive maps as orienting schemata. , 1987, Journal of experimental psychology. Learning, memory, and cognition.
[10] R Wehner,et al. Path integration in desert ants, Cataglyphis fortis. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[11] M. Tarr,et al. Mental rotation and orientation-dependence in shape recognition , 1989, Cognitive Psychology.
[12] R. Muller,et al. The firing of hippocampal place cells in the dark depends on the rat's recent experience , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[13] C. Gallistel. The organization of learning , 1990 .
[14] L. Hedges,et al. Categories and particulars: prototype effects in estimating spatial location. , 1991, Psychological review.
[15] J R Duhamel,et al. The updating of the representation of visual space in parietal cortex by intended eye movements. , 1992, Science.
[16] R. Klatzky,et al. Nonvisual navigation by blind and sighted: assessment of path integration ability. , 1993, Journal of experimental psychology. General.
[17] B L McNaughton,et al. Dynamics of the hippocampal ensemble code for space. , 1993, Science.
[18] R. Wehner,et al. The polarization-vision project: championing organismic biology , 1994 .
[19] Elizabeth S. Spelke,et al. A geometric process for spatial reorientation in young children , 1994, Nature.
[20] B. McNaughton,et al. Place cells, head direction cells, and the learning of landmark stability , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[21] M. Tarr,et al. To What Extent Do Unique Parts Influence Recognition Across Changes in Viewpoint? , 1995 .
[22] M. Tarr. Rotating objects to recognize them: A case study on the role of viewpoint dependency in the recognition of three-dimensional objects , 1995, Psychonomic bulletin & review.
[23] A Berthoz,et al. Spatial memory of body linear displacement: what is being stored? , 1995, Science.
[24] E. Bizzi,et al. The Cognitive Neurosciences , 1996 .
[25] J. O’Keefe,et al. Geometric determinants of the place fields of hippocampal neurons , 1996, Nature.
[26] Zhang,et al. Honeybee navigation en route to the goal: visual flight control and odometry , 1996, The Journal of experimental biology.
[27] A. Bennett,et al. Do animals have cognitive maps? , 1996, The Journal of experimental biology.
[28] Dyer,et al. Spatial memory and navigation by honeybees on the scale of the foraging range , 1996, The Journal of experimental biology.
[29] E. Spelke,et al. Modularity and development: the case of spatial reorientation , 1996, Cognition.
[30] A S Etienne,et al. Path integration in mammals and its interaction with visual landmarks. , 1996, The Journal of experimental biology.
[31] K M Gothard,et al. Dynamics of Mismatch Correction in the Hippocampal Ensemble Code for Space: Interaction between Path Integration and Environmental Cues , 1996, The Journal of Neuroscience.
[32] T. Collett,et al. Insect navigation en route to the goal: multiple strategies for the use of landmarks , 1996, The Journal of experimental biology.
[33] T. McNamara,et al. Viewpoint Dependence in Scene Recognition , 1997 .
[34] S S Fukusima,et al. Visual perception of egocentric distance as assessed by triangulation. , 1997, Journal of experimental psychology. Human perception and performance.
[35] T. McNamara,et al. Multiple views of spatial memory , 1997 .
[36] T. McNamara,et al. Mental representations of large and small spatial layouts are orientation dependent. , 1998, Journal of experimental psychology. Learning, memory, and cognition.
[37] Nancy Kanwisher,et al. A cortical representation of the local visual environment , 1998, Nature.
[38] Ranxiao Frances Wang,et al. Perceiving Real-World Viewpoint Changes , 1998 .
[39] Elizabeth S. Spelke,et al. Sources of Flexibility in Human Cognition: Dual-Task Studies of Space and Language , 1999, Cognitive Psychology.
[40] Ranxiao Frances Wang,et al. Active and passive scene recognition across views , 1999, Cognition.
[41] E S Spelke,et al. Mechanisms of reorientation and object localization by children: a comparison with rats. , 1999, Behavioral neuroscience.
[42] Ranxiao Frances Wang,et al. Mechanisms of reorientation and object localization by children: A comparison with rats , 1999 .
[43] Timothy P. McNamara,et al. Systems of Spatial Reference in Human Memory , 2001, Cognitive Psychology.