Place cells and place navigation.
暂无分享,去创建一个
J Bures | A A Fenton | Y Kaminsky | L Zinyuk | A. Fenton | J. Bureš | L. Zinyuk | Y. Kaminsky | André A. Fenton | Jan Bures
[1] R. Sutherland,et al. Place navigation by rats in a swimming pool. , 1984 .
[2] L. Squire. Memory and Brain , 1987 .
[3] S H Salter,et al. The Atlantis platform: a new design and further developments of Buresova's on-demand platform for the water maze. , 1994, Learning & memory.
[4] R. Morris. Spatial Localization Does Not Require the Presence of Local Cues , 1981 .
[5] J. Bureš,et al. Contribution of egocentric spatial memory to place navigation of rats in the Morris water maze , 1996, Behavioural Brain Research.
[6] A. Fenton,et al. Place navigation in rats with unilateral tetrodotoxin inactivation of the dorsal hippocampus: place but not procedural learning can be lateralized to one hippocampus. , 1993, Behavioral neuroscience.
[7] L. Jarrard. On the role of the hippocampus in learning and memory in the rat. , 1993, Behavioral and neural biology.
[8] 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.
[9] O. Burešová,et al. Modification of unit responses to gustatory stimuli by conditioned taste aversion in rats , 1976, Physiology & Behavior.
[10] RU Muller,et al. The hippocampus as a cognitive graph , 1996, The Journal of general physiology.
[11] Jan Bures,et al. Differential effects of cholinergic blockade on performance of rats in the water tank navigation task and in a radial water maze. , 1986 .
[12] Absence of snapshot memory of the target view interferes with place navigation learning by rats in the water maze. , 1994, Behavioral neuroscience.
[13] J. E. Kelsey,et al. Medial septal lesions disrupt spatial mapping ability in rats. , 1988, Behavioral neuroscience.
[14] J. O’Keefe. Place units in the hippocampus of the freely moving rat , 1976, Experimental Neurology.
[15] O. Burešová. Spatial memory and instrumental conditioning. , 1980, Acta neurobiologiae experimentalis.
[16] J. Taube. Head direction cells recorded in the anterior thalamic nuclei of freely moving rats , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[17] W E Skaggs,et al. Interactions between location and task affect the spatial and directional firing of hippocampal neurons , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[18] E Save,et al. Effects of lesions of the associative parietal cortex on the acquisition and use of spatial memory in egocentric and allocentric navigation tasks in the rat. , 1996, Behavioral neuroscience.
[19] O. Burešová,et al. Techniques and Basic Experiments for the Study of Brain and Behavior , 1976 .
[20] B. McNaughton,et al. Preserved spatial coding in hippocampal CA1 pyramidal cells during reversible suppression of CA3c output: evidence for pattern completion in hippocampus , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[21] J. B. Ranck,et al. Spatial firing patterns of hippocampal complex-spike cells in a fixed environment , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[22] Rudolf Jander,et al. Short-range homing in the house mouse, Mus musculus: stages in the learning of directions , 1994, Animal Behaviour.
[23] O. Burešová,et al. Brain and Behavior. Paradigms for research in neural mechanisms , 1988 .
[24] R. Morris,et al. Spatial learning with a minislab in the dorsal hippocampus. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[25] R. Muller,et al. The firing of hippocampal place cells predicts the future position of freely moving rats , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[26] É. Dolbakyan,et al. Skilled forelimb movements and unit activity in motor cortex and caudate nucleus in rats , 1977, Neuroscience.
[27] R. Muller,et al. Firing properties of hippocampal neurons in a visually symmetrical environment: contributions of multiple sensory cues and mnemonic processes , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[28] D. Olton,et al. Animal Behavior Processes , 2022 .
[29] S. Yehuda,et al. The use of the Morris Water Maze in the study of memory and learning. , 1989, The International journal of neuroscience.
[30] A. J. Hill,et al. Effects of deafness and blindness on the spatial correlates of hippocampal unit activity in the rat , 1981, Experimental Neurology.
[31] J. B. Ranck,et al. Localization and anatomical identification of theta and complex spike cells in dorsal hippocampal formation of rats , 1975, Experimental Neurology.
[32] 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.
[33] E. Tolman. Cognitive maps in rats and men. , 1948, Psychological review.
[34] M. Brazier,et al. Brain and Behavior : Research in Clinical Neuropsychology , 2017 .
[35] S. Mizumori,et al. Reversible inactivation of the lateral dorsal thalamus disrupts hippocampal place representation and impairs spatial learning , 1994, Brain Research.
[36] J. O'Keefe,et al. The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving rat. , 1971, Brain research.
[37] Ian Q. Whishaw,et al. Impairments in the acquisition, retention and selection of spatial navigation strategies after medial caudate-putamen lesions in rats , 1987, Behavioural Brain Research.
[38] A. A. Leão,et al. SPREADING DEPRESSION OF ACTIVITY IN THE CEREBRAL CORTEX , 1944 .
[39] B. McNaughton,et al. Cortical-hippocampal interactions and cognitive mapping: A hypothesis based on reintegration of the parietal and inferotemporal pathways for visual processing , 1989 .
[40] W. Chambers,et al. Reflexes involving triceps surae from the ankle joint of the cat. , 1973, Experimental neurology.
[41] B. McNaughton,et al. Spatial information content and reliability of hippocampal CA1 neurons: Effects of visual input , 1994, Hippocampus.
[42] I. Krekule,et al. On-demand platform improves accuracy of the Morris water maze procedure , 1985, Journal of Neuroscience Methods.
[43] R. Morris,et al. Place navigation impaired in rats with hippocampal lesions , 1982, Nature.
[44] C. Gallistel. The organization of learning , 1990 .
[45] K M Gothard,et al. Binding of hippocampal CA1 neural activity to multiple reference frames in a landmark-based navigation task , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[46] 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.
[47] O. Burešová,et al. Does nondirectional signalization of target distance contribute to navigation in the Morris water maze? , 1988, Behavioral and neural biology.
[48] I. Whishaw,et al. Rats with fimbria-fornix lesions display a place response in a swimming pool: a dissociation between getting there and knowing where , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[49] L. Nadel,et al. The Hippocampus as a Cognitive Map , 1978 .