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Cannabis Use Linked to Altered Functional Connectivity of the Visual Attentional Connectivity in Patients With Psychosis and Controls

M. Sami, R. Mccutcheon, U. Ettinger, Steven C. R. Williams, D. Lythgoe, P. McGuire, S. Bhattacharyya

Schizophrenia Bulletin Open January 1, 2020 DOI: 10.1093/schizbullopen/sgaa018 via Semantic Scholar

Summary

AI-generated from the abstract

Both chronic cannabis use and psychotic disorders are linked to abnormalities in how the brain processes visual attention. Using resting-state fMRI, connectivity was measured in the visual and dorsal attention networks of people with early psychosis who did or did not use cannabis, and healthy controls who did or did not use cannabis. Patients with a history of cannabis use showed increased connectivity in the dorsal attention network (134%) and between the visual and dorsal attention networks (285%) compared to non-using controls. In patients who used cannabis, connectivity in these networks correlated with visual hallucinations and with severity of cannabis dependence. The findings suggest that disrupted connectivity in these networks may play different roles depending on cannabis use.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 92
Population Patients with early psychosis and healthy controls, with and without cannabis use
Keywords Medicine Psychology
Key finding Patients with early psychosis and a history of cannabis use showed increased connectivity in the dorsal attention network and between visual and dorsal attention networks compared to non-using controls, and these connectivity measures correlated with visual hallucinations and cannabis dependence severity.

Abstract

Both chronic cannabis use and psychotic disorders are associated with abnormalities in visual attentional processing. Using functional magnetic resonance imaging (fMRI), we sought to determine whether there would be a difference in functional connectivity in patients and controls with and without a history of cannabis use in the visual and dorsal attention networks. Resting-state fMRI data were acquired in patients with early psychosis with (EPC = 29) and without (EPNC = 25); and controls with (HCC = 16) and without (HCNC = 22) cannabis use. There was a patient effect in both Visual-Dorsal Attention Internetwork (F(1,87) = 5.326, P = .023) and the Visual Network (F(1,87) = 4.044, P = .047) and a cannabis effect in the Dorsal Attention Network (F(1,87) = 4.773, P = .032). These effects were specific to the networks examined with no evidence for significant patient or cannabis effects in other canonical networks. Patients with a history of cannabis use showed increased connectivity in the Dorsal Attention Network (134%, P = .019) and Visual Dorsal Attention Internetwork (285%, P = .036) compared to non-using controls. In the EPC group connectivity of the Visual Network (ρ = 0.379, P = .042) and Visual-Dorsal Attention Internetwork (ρ = 0.421, P = .023) correlated with visual hallucinations which were significantly different from EPNC (P = .011). Dorsal attention network strength correlated with severity of dependence for cannabis (ρ = 0.215, P = .04). We demonstrate specific cannabis and patient effects in networks associated with visual attentional processing. There is a differential association with hallucinatory symptoms in patients with and without a history of cannabis use. This may indicate that dysconnectivity in these networks serves different roles in the context of cannabis use.

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