Title
Human visual system automatically encodes sequential regularities of discrete events.
Abstract
For our adaptive behavior in a dynamically changing environment, an essential task of the brain is to automatically encode sequential regularities inherent in the environment into a memory representation. Recent studies in neuroscience have suggested that sequential regularities embedded in discrete sensory events are automatically encoded into a memory representation at the level of the sensory system. This notion is largely supported by evidence from investigations using auditory mismatch negativity (auditory MMN), an event-related brain potential (ERP) correlate of an automatic memory-mismatch process in the auditory sensory system. However, it is still largely unclear whether or not this notion can be generalized to other sensory modalities. The purpose of the present study was to investigate the contribution of the visual sensory system to the automatic encoding of sequential regularities using visual mismatch negativity (visual MMN), an ERP correlate of an automatic memory-mismatch process in the visual sensory system. To this end, we conducted a sequential analysis of visual MMN in an oddball sequence consisting of infrequent deviant and frequent standard stimuli, and tested whether the underlying memory representation of visual MMN generation contains only a sensory memory trace of standard stimuli (trace-mismatch hypothesis) or whether it also contains sequential regularities extracted from the repetitive standard sequence (regularity-violation hypothesis). The results showed that visual MMN was elicited by first deviant (deviant stimuli following at least one standard stimulus), second deviant (deviant stimuli immediately following first deviant), and first standard (standard stimuli immediately following first deviant), but not by second standard (standard stimuli immediately following first standard). These results are consistent with the regularity-violation hypothesis, suggesting that the visual sensory system automatically encodes sequential regulari- ies. In combination with a wide range of auditory MMN studies, the present study highlights the critical role of sensory systems in automatically encoding sequential regularities when modeling the world.
Year
DOI
Venue
2010
10.1162/jocn.2009.21299
Cognitive Neuroscience, Journal of
Keywords
Field
DocType
auditory sensory system,deviant stimulus,human visual system,encodes sequential regularity,sequential regularity,discrete event,sensory system,standard stimulus,memory representation,visual mmn,automatic memory-mismatch process,visual sensory system,regularity-violation hypothesis,sequential analysis,adaptive behavior,mismatch negativity
Mismatch negativity,Neuroscience,Human visual system model,Psychology,Stimulus (physiology),Sensory system,Visual system,Sensory memory,Stimulus modality,Visual perception
Journal
Volume
Issue
ISSN
22
6
1530-8898
Citations 
PageRank 
References 
6
0.60
8
Authors
4
Name
Order
Citations
PageRank
Motohiro Kimura160.94
Schröger, E281.06
István Czigler3243.12
Hideki Ohira4598.07