Scientific article
OA Policy
English

Electrophysiological analysis of signal detection outcomes emphasizes the role of decisional factors in recognition memory

Published inFrontiers in human neuroscience, vol. 18, 1358298
Publication date2024-03-20
First online date2024-03-20
Abstract

Introduction : Event-related potential (ERP) studies have identified two time windows associated with recognition memory and interpreted them as reflecting two processes: familiarity and recollection. However, using relatively simple stimuli and achieving high recognition rates, most studies focused on hits and correct rejections. This leaves out some information (misses and false alarms) that according to Signal Detection Theory (SDT) is necessary to understand signal processing.

Methods : We used a difficult visual recognition task with colored pictures of different categories to obtain enough of the four possible SDT outcomes and analyzed them with modern ERP methods.

Results : Non-parametric analysis of these outcomes identified a single time window (470 to 670 ms) which reflected activity within fronto-central and posterior-left clusters of electrodes, indicating differential processing. The posterior-left cluster significantly distinguished all STD outcomes. The fronto-central cluster only distinguished ERPs according to the subject’s response: yes vs. no. Additionally, only electrophysiological activity within the posterior-left cluster correlated with the discrimination index (d’).

Discussion : We show that when all SDT outcomes are examined, ERPs of recognition memory reflect a single-time window that may reveal a bottom-up factor discriminating the history of items (i.e. memory strength), as well as a top-down factor indicating participants’ decision.

Keywords
  • Decisional processes
  • Event-related potentials
  • Model-free approach
  • Recognition memory
  • Signal detection theory
Citation (ISO format)
SCHNEIDER, Stephan et al. Electrophysiological analysis of signal detection outcomes emphasizes the role of decisional factors in recognition memory. In: Frontiers in human neuroscience, 2024, vol. 18, p. 1358298. doi: 10.3389/fnhum.2024.1358298
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Journal ISSN1662-5161
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