Attentive novelty detection in humans is governed by pre-attentive sensory memory
- 1 November 1994
- journal article
- Published by Springer Nature in Nature
- Vol. 372 (6501), 90-92
- https://doi.org/10.1038/372090a0
Abstract
Being able to detect unusual, possibly dangerous events in the environment is a fundamental ability that helps ensure the survival of biological organisms. Novelty detection requires a memory system that models (builds neural representations of) events in the environment, so that changes are detected because they violate the predictions of the model. The earliest physiologically measurable brain response to novel auditory stimuli is the mismatch negativity, MMN, a component of the event-related potential. It is elicited when a predictable series of unvarying stimuli is unexpectedly followed by a deviating stimulus. As the occurrence of MMN is not usually affected by the direction of attention, MMN reflects the operation of automatic sensory (echoic) memory, the earliest memory system that builds traces of the acoustic environment against which new stimuli can be compared. The dependence of attentive novelty detection on earlier, pre-attentive processes, however, has remained elusive. Previous, related studies seem to suggest a relationship between MMN and attentive processes, although no conclusive evidence has so far been shown. Here we address novelty detection in humans both on a physiological and behavioural level, and show how attentive novelty detection is governed by a pre-attentive sensory memory mechanism.Keywords
This publication has 13 references indexed in Scilit:
- Tonotopic auditory cortex and the magnetoencephalographic (MEG) equivalent of the mismatch negativityPsychophysiology, 1993
- Event-related brain potentials reflect traces of echoic memory in humansPerception & Psychophysics, 1993
- Mismatch Detection and the Latency of Temporal JudgmentsPsychophysiology, 1992
- Mismatch Negativity Outside Strong Attentional Focus: A Commentary on Woldorff et al. (1991)Psychophysiology, 1991
- The Effects of Channel‐Selective Attention on the Mismatch Negativity Wave Elicited by Deviant TonesPsychophysiology, 1991
- Differentiation of negative event-related potentials in an auditory discrimination taskElectroencephalography and Clinical Neurophysiology, 1990
- Notes on Neural ComputingPublished by Springer Nature ,1989
- Auditory frequency discrimination and event-related potentialsElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1985
- Responses of the primary auditory cortex to pitch changes in a sequence of tone pips: Neuromagnetic recordings in manNeuroscience Letters, 1984
- Early selective-attention effect on evoked potential reinterpretedActa Psychologica, 1978