Impact of acute stress on neural indices of positive and negative reinforcement processing in cannabis users.

心理学 上瘾 大麻 临床心理学 同种异体 钢筋 探索性研究 混淆 意识的神经相关物 心理信息 精神科 医学 梅德林 神经科学 认知 内科学 社会心理学 社会学 法学 人类学 政治学
作者
Thomas J. Preston,Brian J. Albanese,Norman B. Schmidt,Richard J. Macatee
出处
期刊:Psychology of Addictive Behaviors [American Psychological Association]
卷期号:36 (8): 1036-1047 被引量:3
标识
DOI:10.1037/adb0000846
摘要

Chronic cannabis use is maintained in part through dysregulated stress and reward response systems. Specifically, stress-related negative affect is thought to act as a salient motivator for chronic substance use. Models of addiction posit that the transition from positive to negative reinforcement motives for substance use is a key mechanism of disordered use. However, research in substance-using samples has not assessed stress-related neural processing of both positive and negative reinforcement.Therefore, the present study utilized laboratory stress induction to examine how stress affects the reward positivity, an event-related potential sensitive to both positive (RewP) and negative (relief-RewP) reinforcement, in 87 cannabis users (58.10% female, Mage = 19.40) varying in cannabis use disorder (CUD) severity and, as part of larger study aims, history of traumatic brain injury (TBI). We predicted greater CUD severity would be associated with a blunted RewP and enhanced relief-RewP, particularly after stress induction, independent of TBI status.Findings indicated that CUD severity was not associated with RewP/relief-RewP amplitude regardless of acute stress. Exploratory analyses revealed, however, that among those with history of TBI +, CUD severity was associated with greater stress-elicited blunting of the RewP and enhancement of the relief-RewP.Although initial findings contradict current allostatic models of addiction, exploratory findings suggest that history of TBI, and potentially other confounding variables related to increased risk of TBI experience, may influence the extent to which stressful experiences modulate the neurophysiology of both positive and negative reinforcement reward processing in CUD. (PsycInfo Database Record (c) 2022 APA, all rights reserved).
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