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首页> 外文期刊>Neuropsychopharmacology >Functional Connectivity in Brain Networks Underlying Cognitive Control in Chronic Cannabis Users
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Functional Connectivity in Brain Networks Underlying Cognitive Control in Chronic Cannabis Users

机译:慢性大麻使用者认知控制背后的大脑网络中的功能连接

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摘要

The long-term effect of regular cannabis use on brain function underlying cognitive control remains equivocal. Cognitive control abilities are thought to have a major role in everyday functioning, and their dysfunction has been implicated in the maintenance of maladaptive drug-taking patterns. In this study, the Multi-Source Interference Task was employed alongside functional magnetic resonance imaging and psychophysiological interaction methods to investigate functional interactions between brain regions underlying cognitive control. Current cannabis users with a history of greater than 10 years of daily or near-daily cannabis smoking (n=21) were compared with age, gender, and IQ-matched non-using controls (n=21). No differences in behavioral performance or magnitude of task-related brain activations were evident between the groups. However, greater connectivity between the prefrontal cortex and the occipitoparietal cortex was evident in cannabis users, as compared with controls, as cognitive control demands increased. The magnitude of this connectivity was positively associated with age of onset and lifetime exposure to cannabis. These findings suggest that brain regions responsible for coordinating behavioral control have an increased influence on the direction and switching of attention in cannabis users, and that these changes may have a compensatory role in mitigating cannabis-related impairments in cognitive control or perceptual processes.
机译:经常使用大麻对认知控制所依据的脑功能的长期影响仍然模棱两可。认知控制能力被认为在日常功能中起着主要作用,并且其功能障碍与不良适应性药物服用模式的维持有关。在这项研究中,多源干扰任务与功能磁共振成像和心理生理学相互作用方法一起被采用,以研究认知控制背后的大脑区域之间的功能相互作用。将每天或近日每天吸烟超过10年(n = 21)的大麻使用者与年龄,性别和智商匹配的不使用对照(n = 21)进行比较。在两组之间,行为表现或与任务相关的大脑激活程度没有明显差异。但是,与大麻相比,随着认知控制需求的增加,大麻使用者中前额叶皮层和枕顶叶皮层之间的连接性明显增强。这种联系的程度与发病年龄和终生接触大麻呈正相关。这些发现表明,负责协调行为控制的大脑区域对大麻使用者的注意方向和注意力转移的影响增加,并且这些变化可能在缓解大麻与认知控制或知觉过程有关的损伤方面具有补偿作用。

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