4.8 Article

Grid-like hexadirectional modulation of human entorhinal theta oscillations

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1805007115

关键词

spatial memory; theta oscillations; navigation; intracranial electrocorticography; grid cells

资金

  1. DARPA Restoring Active Memory (RAM) program [N66001-14-2-4032]
  2. NIH [MH061975, MH104606]
  3. National Science Foundation [BCS-1724243]
  4. NATIONAL INSTITUTE OF MENTAL HEALTH [R01MH104606, R01MH061975] Funding Source: NIH RePORTER

向作者/读者索取更多资源

The entorhinal cortex contains a network of grid cells that play a fundamental part in the brain's spatial system, supporting tasks such as path integration and spatial memory. In rodents, grid cells are thought to rely on network theta oscillations, but such signals are not evident in all species, challenging our understanding of the physiological basis of the grid network. We analyzed intracranial recordings from neurosurgical patients during virtual navigation to identify oscillatory characteristics of the human entorhinal grid network. The power of entorhinal theta oscillations showed six-fold modulation according to the virtual heading during navigation, which is a hypothesized signature of grid representations. Furthermore, modulation strength correlated with spatial memory performance. These results demonstrate the connection between theta oscillations and the human entorhinal grid network and show that features of grid-like neuronal representations can be identified from population electrophysiological recordings.

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