Human brain sub-systems for discrimination of visual shapes
- 1 August 2000
- journal article
- research article
- Published by Wolters Kluwer Health in NeuroReport
- Vol. 11 (11) , 2415-2418
- https://doi.org/10.1097/00001756-200008030-00015
Abstract
To investigate whether stereo and plane visual shapes are processed in the same brain system, participants were instructed to discriminate whether two visual stimuli presented in sequence were identical and event-related potential (ERP) was recorded from their scalp. The first (S1) and the second stimuli (S2) were the same stereo shapes in condition 1, but were different in condition 3. They were the same plane shapes in condition 2, but different in condition 4. A negative component (N270) was recorded in condition 3 and 4, which showed the maximal amplitude in the right posterior scalp in condition 3 and in the anterior scalp in condition 4. A different cognition mechanism is involved in the processing of non-matched stereo and plane visual shapes.Keywords
This publication has 12 references indexed in Scilit:
- An event‐related brain potential study of visual selective attention to conjunctions of color and shapePsychophysiology, 1999
- Dissociating prefrontal and hippocampal function in episodic memory encodingNature, 1997
- Brain Regions Responsive to Novelty in the Absence of AwarenessScience, 1997
- Dissociation of Object and Spatial Processing Domains in Primate Prefrontal CortexScience, 1993
- A Neural Mechanism for Working and Recognition Memory in Inferior Temporal CortexScience, 1991
- The Effects of Task on the Modulation of Event‐Related Potentials by Word RepetitionPsychophysiology, 1988
- The Effects of Semantic Priming and Word Repetition on Event‐Related PotentialsPsychophysiology, 1985
- Event-related potentials, lexical decision and semantic primingElectroencephalography and Clinical Neurophysiology, 1985
- Event-related potentials in phonological matching tasksBrain and Language, 1984
- Reading Senseless Sentences: Brain Potentials Reflect Semantic IncongruityScience, 1980