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Neuropharmacological computational analysis of longitudinal electroencephalograms in clozapine-treated patients with schizophrenia using hierarchical dynamic causal modeling

Authors
 Jinseok Eo  ;  Jiyoung Kang  ;  Tak Youn  ;  Hae-Jeong Park 
Citation
 NEUROIMAGE, Vol.275 : 120161, 2023-07 
Journal Title
NEUROIMAGE
ISSN
 1053-8119 
Issue Date
2023-07
MeSH
Brain / diagnostic imaging ; Brain Mapping ; Clozapine* / pharmacology ; Clozapine* / therapeutic use ; Electroencephalography ; Hallucinations ; Humans ; Magnetic Resonance Imaging ; N-Methylaspartate ; Nerve Net ; Neuropharmacology ; Schizophrenia* / diagnostic imaging ; Schizophrenia* / drug therapy
Keywords
Clozapine ; Computational neuropharmacological modeling ; Computational neuropharmacology ; Default mode network ; Dynamic causal modeling ; Hierarchical modeling ; Resting state EEG ; Treatment-resistant schizophrenia
Abstract
The hierarchical characteristics of the brain are prominent in the pharmacological treatment of psychiatric diseases, primarily targeting cellular receptors that extend upward to intrinsic connectivity within a region, interregional connectivity, and, consequently, clinical observations such as an electroencephalogram (EEG). To understand the long-term effects of neuropharmacological intervention on neurobiological properties at different hierarchical levels, we explored long-term changes in neurobiological parameters of an N-methyl-D-aspartate canonical microcircuit model (CMM-NMDA) in the default mode network (DMN) and auditory hallucination network (AHN) using dynamic causal modeling of longitudinal EEG in clozapine-treated patients with schizophrenia. The neurobiological properties of the CMM-NMDA model associated with symptom improvement in schizophrenia were found across hierarchical levels, from a reduced membrane capacity of the deep pyramidal cell and intrinsic connectivity with the inhibitory population in DMN and intrinsic and extrinsic connectivity in AHN. The medication duration mainly affects the intrinsic connectivity and NMDA time constant in DMN. Virtual perturbation analysis specified the contribution of each parameter to the cross-spectral density (CSD) of the EEG, particularly intrinsic connectivity and membrane capacitances for CSD frequency shifts and progression. It further reveals that excitatory and inhibitory connectivity complements frequency-specific CSD changes, notably the alpha frequency band in DMN. Positive and negative synergistic interactions exist between neurobiological properties primarily within the same region in patients treated with clozapine. The current study shows how computational neuropharmacology helps explore the multiscale link between neurobiological properties and clinical observations and understand the long-term mechanism of neuropharmacological intervention reflected in clinical EEG.
Files in This Item:
T202306887.pdf Download
DOI
10.1016/j.neuroimage.2023.120161
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Nuclear Medicine (핵의학교실) > 1. Journal Papers
Yonsei Authors
Park, Hae Jeong(박해정) ORCID logo https://orcid.org/0000-0002-4633-0756
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/197555
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