Dysconnectivity in Schizophrenia Revisited: Abnormal Temporal Organization of Dynamic Functional Connectivity in Patients With a First Episode of Psychosis
Journal
Schizophrenia Bulletin
ISSN
0586-7614
1745-1701
Date Issued
2022
Author(s)
Juan P Ramirez-Mahaluf
Ángeles Tepper
Luz Maria Alliende
Carlos Mena
Carmen Paz Castañeda
Barbara Iruretagoyena
Ruben Nachar
Francisco Reyes-Madrigal
Pablo León-Ortiz
Ricardo Mora-Durán
Tomas Ossandon
Alfonso Gonzalez-Valderrama
Camilo de la Fuente-Sandoval
Nicolas A Crossley
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Abstract
<jats:title>Abstract</jats:title>
<jats:sec>
<jats:title>Background and Hypothesis</jats:title>
<jats:p>Abnormal functional connectivity between brain regions is a consistent finding in schizophrenia, including functional magnetic resonance imaging (fMRI) studies. Recent studies have highlighted that connectivity changes in time in healthy subjects. We here examined the temporal changes in functional connectivity in patients with a first episode of psychosis (FEP). Specifically, we analyzed the temporal order in which whole-brain organization states were visited.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Study Design</jats:title>
<jats:p>Two case-control studies, including in each sample a subgroup scanned a second time after treatment. Chilean sample included 79 patients with a FEP and 83 healthy controls. Mexican sample included 21 antipsychotic-naïve FEP patients and 15 healthy controls. Characteristics of the temporal trajectories between whole-brain functional connectivity meta-states were examined via resting-state functional MRI using elements of network science. We compared the cohorts of cases and controls and explored their differences as well as potential associations with symptoms, cognition, and antipsychotic medication doses.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Study Results</jats:title>
<jats:p>We found that the temporal sequence in which patients’ brain dynamics visited the different states was more redundant and segregated. Patients were less flexible than controls in changing their network in time from different configurations, and explored the whole landscape of possible states in a less efficient way. These changes were related to the dose of antipsychotics the patients were receiving. We replicated the relationship with antipsychotic medication in the antipsychotic-naïve FEP sample scanned before and after treatment.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Conclusions</jats:title>
<jats:p>We conclude that psychosis is related to a temporal disorganization of the brain’s dynamic functional connectivity, and this is associated with antipsychotic medication use.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Background and Hypothesis</jats:title>
<jats:p>Abnormal functional connectivity between brain regions is a consistent finding in schizophrenia, including functional magnetic resonance imaging (fMRI) studies. Recent studies have highlighted that connectivity changes in time in healthy subjects. We here examined the temporal changes in functional connectivity in patients with a first episode of psychosis (FEP). Specifically, we analyzed the temporal order in which whole-brain organization states were visited.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Study Design</jats:title>
<jats:p>Two case-control studies, including in each sample a subgroup scanned a second time after treatment. Chilean sample included 79 patients with a FEP and 83 healthy controls. Mexican sample included 21 antipsychotic-naïve FEP patients and 15 healthy controls. Characteristics of the temporal trajectories between whole-brain functional connectivity meta-states were examined via resting-state functional MRI using elements of network science. We compared the cohorts of cases and controls and explored their differences as well as potential associations with symptoms, cognition, and antipsychotic medication doses.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Study Results</jats:title>
<jats:p>We found that the temporal sequence in which patients’ brain dynamics visited the different states was more redundant and segregated. Patients were less flexible than controls in changing their network in time from different configurations, and explored the whole landscape of possible states in a less efficient way. These changes were related to the dose of antipsychotics the patients were receiving. We replicated the relationship with antipsychotic medication in the antipsychotic-naïve FEP sample scanned before and after treatment.</jats:p>
</jats:sec>
<jats:sec>
<jats:title>Conclusions</jats:title>
<jats:p>We conclude that psychosis is related to a temporal disorganization of the brain’s dynamic functional connectivity, and this is associated with antipsychotic medication use.</jats:p>
</jats:sec>
Cite this document
Ramirez-Mahaluf, J. P., Tepper, Á., Alliende, L. M., Mena, C., Castañeda, C. P., Iruretagoyena, B., Nachar, R., Reyes-Madrigal, F., León-Ortiz, P., Mora-Durán, R., Ossandon, T., Gonzalez-Valderrama, A., Undurraga, J., De La Fuente-Sandoval, C., & Crossley, N. A. (2023). Dysconnectivity in schizophrenia revisited: Abnormal temporal organization of dynamic functional connectivity in patients with a first episode of psychosis. Schizophrenia Bulletin, 49(3), 706-716. https://doi.org/10.1093/schbul/sbac187
Subjects
dynamic connectivity
;
meta-states
;
antipsychot ic
;
schizophrenia
;
brain networks
;
graph analysis
;
antipsychotic agents
;
brain
;
brain mapping
;
humans
;
magnetic resonance imaging
;
psychotic disorders
;
schizophrenia
;
chlorpromazine
;
neuroleptic agent
;
neuroleptic agent
;
adult
;
affective psychosis
;
article
;
brain dysfunction
;
case control study
;
chilean
;
cognition
;
cohort analysis
;
controlled study
;
female
;
functional connectivity
;
functional magnetic resonance imaging
;
human
;
major clinical study
;
male
;
mexican
;
negative syndrome
;
non affective psychosis
;
non affective psychosis
;
positive and negative syndrome scale
;
psychosis
;
young adult
;
brain
;
brain mapping
;
diagnostic imaging
;
nuclear magnetic resonance imaging
;
schizophrenia