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March 21, 2026Imaging Neuroscience2 citationsOpen Access

All spectral frequencies of neural activity reveal semantic representation in the human anterior ventral temporal cortex

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SFSaskia L. FrisbyAHAjay D. HalaiCCChristopher R. Cox

Key Points

  • This research aims to explore how different spectral frequencies of neural activity represent semantic information in the human brain.
  • Used electrocorticography (ECoG) to capture neural activity from the anterior ventral temporal cortex (vATL).
  • Analyzed time-frequency power and phase to decode animacy.
  • Employed regularised logistic regression for decoding semantic information.
  • Decoding accuracy was higher when combining power from a broad range of frequencies (4-200 Hz) compared to just gamma (30-60 Hz) and high gamma (60-200 Hz).
  • Reliable decoding of semantic information aligns with the theory of a local vATL hub that engages with broader cortical networks.

Abstract

Abstract Intracranial electrophysiology offers a unique insight into the nature of information representation in the brain – it can be used to disentangle information encoded in gamma and high gamma frequencies from information encoded in lower frequencies. We used regularised logistic regression to decode animacy from time-frequency power and phase extracted from electrocorticography (ECoG) grid electrode data recorded on the surface of human vATL. Power in gamma (30 – 60 Hz) and high gamma (60 – 200 Hz) produced reliable decoding, indicating that semantic information is indeed expressed by local populations in vATL. However, power from a wide range of frequencies (4 – 200 Hz) produced significantly higher decoding accuracy and also exhibited the same rapidly-changing dynamic code previously observed when decoding voltage. These findings support the theory that semantic information is encoded by a local vATL “hub” that interacts with distributed cortical “spokes”.

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Cite This Study

Frisby et al. (2026) studied this question.

synapsesocial.com/papers/69be37506e48c4981c676cf6https://doi.org/10.1162/imag.a.1201
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