Lattices abound in nature—from the crystal structure of minerals to the honey-comb organization of ommatidia in the compound eye of insects. These arrangements provide solutions for optimal packings, efficient resource distribution, and cryptographic protocols. Do lattices also play a role in how the brain represents information? We focus on higher-dimensional stimulus domains, with particular emphasis on neural representations of physical space, and derive which neuronal lattice codes maximize spatial resolution. For mammals navigating on a surface, we show that the hexagonal activity patterns of grid cells are optimal. For species that move freely in three dimensions, a face-centered cubic lattice is best. This prediction could be tested ...
Grid cells in the dorsal segment of the medial entorhinal cortex (dMEC) show remarkable hexagonal ac...
Abstract Grid cells in the entorhinal cortex, together with head direction, place, speed and border...
Three-dimensional (3D) spatial cells in the mammalian hippocampal formation are believed to support ...
Lattices abound in nature—from the crystal structure of minerals to the honey-comb organization of o...
Grid cells in the brain respond when an animal occupies a periodic lattice of “grid fields ” during ...
Grid cells in the brain respond when an animal occupies a periodic lattice of ‘grid fields’ during n...
Rodents use two distinct neuronal coordinate systems to estimate their position: place fields in the...
Grid cells in the entorhinal cortex fire when animals that are exploring a certain region of space o...
Ever since grid cells were discovered in the mammalian entorhinal cortex over a decade ago, the stri...
How does the brain represent the world and allow spatial navigation? One mechanism is hippocampal pl...
The sense of space is important for movement and the formation of memories. Grid cells in the entorh...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Grid cells in the entorhinal cortex, together with head direction, place, speed and border cells, ar...
When we find our way in the environ-ment, we need to integrate information about location, direction...
Place cells in the hippocampus represent places by increasing their firing rate when an animal visit...
Grid cells in the dorsal segment of the medial entorhinal cortex (dMEC) show remarkable hexagonal ac...
Abstract Grid cells in the entorhinal cortex, together with head direction, place, speed and border...
Three-dimensional (3D) spatial cells in the mammalian hippocampal formation are believed to support ...
Lattices abound in nature—from the crystal structure of minerals to the honey-comb organization of o...
Grid cells in the brain respond when an animal occupies a periodic lattice of “grid fields ” during ...
Grid cells in the brain respond when an animal occupies a periodic lattice of ‘grid fields’ during n...
Rodents use two distinct neuronal coordinate systems to estimate their position: place fields in the...
Grid cells in the entorhinal cortex fire when animals that are exploring a certain region of space o...
Ever since grid cells were discovered in the mammalian entorhinal cortex over a decade ago, the stri...
How does the brain represent the world and allow spatial navigation? One mechanism is hippocampal pl...
The sense of space is important for movement and the formation of memories. Grid cells in the entorh...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Grid cells in the entorhinal cortex, together with head direction, place, speed and border cells, ar...
When we find our way in the environ-ment, we need to integrate information about location, direction...
Place cells in the hippocampus represent places by increasing their firing rate when an animal visit...
Grid cells in the dorsal segment of the medial entorhinal cortex (dMEC) show remarkable hexagonal ac...
Abstract Grid cells in the entorhinal cortex, together with head direction, place, speed and border...
Three-dimensional (3D) spatial cells in the mammalian hippocampal formation are believed to support ...