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P0140 - Brain cell membrane motion-restricted phospholipids in patients with schizophrenia who have seriously and dangerously violently offended

Published online by Cambridge University Press:  16 April 2020

B.K. Puri
Affiliation:
MRI Unit, Imaging Sciences Department, MRC CSC, Imperial College London, Hammersmith Hospital, London, UK
S.J. Counsell
Affiliation:
MRI Unit, Imaging Sciences Department, MRC CSC, Imperial College London, Hammersmith Hospital, London, UK
G. Hamilton
Affiliation:
Department of Radiology, University of California, San Diego, School of Medicine, San Diego, CA, USA
M.G. Bustos
Affiliation:
Three Bridges Medium Secure Unit, Imperial College London, West London Mental Health NHS Trust, Middlesex, UK
I.H. Treasaden
Affiliation:
Three Bridges Medium Secure Unit, Imperial College London, West London Mental Health NHS Trust, Middlesex, UK

Abstract

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Background and Aims:

This study directly assessed, for the first time, whether, as expected under the membrane phospholipid hypothesis of schizophrenia, there was a change in brain cell motion-restricted membrane phospholipids in vivo in male forensic patients with schizophrenia who had seriously and violently offended (homicide, attempted murder, or wounding with intent to cause grievous bodily harm) while psychotic, by quantification of the broadband resonance signal from 31-phosphorus neurospectroscopy scans.

Methods:

Cerebral 31-phosphorus magnetic resonance spectroscopy was carried out in 15 male patients with schizophrenia who had seriously and violently offended (homicide, attempted murder, or wounding with intent to cause grievous bodily harm) while psychotic and in 12 age- and sex-matched normal control subjects. Data were obtained using a 1.5 T Marconi Eclipse system with a birdcage quadrature head coil dual-tuned to proton (64 MHz) and 31P (26 MHz). T1-weighted magnetic resonance images were acquired for spectral localization. Spectra were obtained using an image-selected in vivo spectroscopy sequence (TR = 10 s; 64 signal averages) localized on a 70 x 70 x 70 mm3 voxel.

Results:

There was no significant difference in the broad resonances between the two groups, with the mean (standard error) percentage broadband signal for the patients being 57.8 (5.6) and that for the control subjects 57.7 (6.0). The phosphomonoesters and phosphodiesters narrow signals also did not differ between the groups.

Conclusion:

Our data suggest that the membrane phospholipid hypothesis of schizophrenia may not apply to the subgroup of schizophrenia patients who have seriously and violently offended.

Type
Poster Session III: Forensic Psychiatry
Copyright
Copyright © European Psychiatric Association 2008
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