Psychiatry Investig.  2016 May;13(3):349-359. 10.4306/pi.2016.13.3.349.

Dysfunctional Patterns of Gamma-Band Activity in Response to Human Faces Compared to Non-Facial Stimuli in Patients with Schizophrenia

Affiliations
  • 1Department of Psychiatry, Inje University Ilsan Paik Hospital, Goyang, Republic of Korea.
  • 2Clinical Emotion and Cognition Research Laboratory, Goyang, Republic of Korea.
  • 3Department of Biomedical Engineering, Hanyang University, Seoul, Republic of Korea. ich@hanyang.ac.kr

Abstract


OBJECTIVE
Healthy individuals show stronger gamma-band activities (GBAs) for socially relevant stimuli (human faces) than for non-relevant ones. This study aimed to examine whether this gamma-band preference occurs in patients with schizophrenia.
METHODS
EEG was recorded for 24 patients with schizophrenia and 23 healthy controls while they viewed pictures of human faces, chairs, and nature scenes. The spectral powers of high-beta (20-30 Hz) and gamma (30-80 Hz) frequencies were analyzed along 3 midline cortical regions, and phase synchronization was calculated.
RESULTS
Compared to the response to non-facial stimuli, higher event related deactivation to facial stimuli was observed for the high-beta frequency across groups. For the gamma frequency, early-stage GBA was increased and late-stage GBA was decreased for all 3 stimuli in patients with schizophrenia compared to healthy controls. Preferential GBA patterns (100-200 and 200-300 ms) were found in healthy controls, but not in patients with schizophrenia. Significant correlation existed between negative symptoms and GBA in the frontal region for chair and scene stimuli. There was no significant intergroup difference in phase synchronization pattern.
CONCLUSION
Our results suggest that patients with schizophrenia have deficits in the preferential pattern of GBA for human faces and the deficits in the preferential pattern were mainly influenced by over-response to socially non-relevant stimuli.

Keyword

Gamma-band activity; High-beta-band activity; Phase synchronization; Schizophrenia; Human faces

MeSH Terms

Electroencephalography
Humans*
Schizophrenia*
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