Three-dimensional (3D) spatial cells in the mammalian hippocampal formation are believed to support the existence of 3D cognitive maps. Modeling studies are crucial to comprehend the neural principles governing the formation of these maps, yet to date very few have addressed this topic in 3D space. Here we present a hierarchical network model for the formation of 3D spatial cells using anti-Hebbian network. Built on empirical data, the model accounts for the natural emergence of 3D place, border, and grid cells, as well as a new type of previously undescribed spatial cell type which we call plane cells. It further explains the plausible reason behind the place and grid-cell anisotropic coding that has been observed in rodents and the potent...
The medial entorhinal cortex and the hippocampus are brain regions specialized in spatial informatio...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
Ever since grid cells were discovered in the mammalian entorhinal cortex over a decade ago, the stri...
Grid cells in the dorsal segment of the medial entorhinal cortex (dMEC) show remarkable hexagonal ac...
The brain is able to construct internal representations that correspond to external spatial coordina...
Lattices abound in nature—from the crystal structure of minerals to the honey-comb organization of o...
The brain is able to construct internal representations that correspond to external spatial coordina...
The work presented in this dissertation focuses on the use of computational and mathematical models ...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Neural encoding of navigable space involves a network of structures centered on the hippocampus, who...
From recording single neurons in rodents and primates, and observing the effects of lesions in human...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
International audienceHippocampal place cells and entorhinal grid cells are thought to form a repres...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
The medial entorhinal cortex and the hippocampus are brain regions specialized in spatial informatio...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
Ever since grid cells were discovered in the mammalian entorhinal cortex over a decade ago, the stri...
Grid cells in the dorsal segment of the medial entorhinal cortex (dMEC) show remarkable hexagonal ac...
The brain is able to construct internal representations that correspond to external spatial coordina...
Lattices abound in nature—from the crystal structure of minerals to the honey-comb organization of o...
The brain is able to construct internal representations that correspond to external spatial coordina...
The work presented in this dissertation focuses on the use of computational and mathematical models ...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Neural encoding of navigable space involves a network of structures centered on the hippocampus, who...
From recording single neurons in rodents and primates, and observing the effects of lesions in human...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
International audienceHippocampal place cells and entorhinal grid cells are thought to form a repres...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
The medial entorhinal cortex and the hippocampus are brain regions specialized in spatial informatio...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
Ever since grid cells were discovered in the mammalian entorhinal cortex over a decade ago, the stri...