首页> 外文期刊>Behavioural Brain Research: An International Journal >Human avoidance and approach learning: evidence for overlapping neural systems and experiential avoidance modulation of avoidance neurocircuitry.
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Human avoidance and approach learning: evidence for overlapping neural systems and experiential avoidance modulation of avoidance neurocircuitry.

机译:人类回避和进近学习:神经系统重叠和回避神经回路的经验回避调制的证据。

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摘要

Adaptive functioning is thought to reflect a balance between approach and avoidance neural systems with imbalances often producing pathological forms of avoidance. Yet little evidence is available in healthy adults demonstrating a balance between approach and avoidance neural systems and modulation in avoidance neurocircuitry by vulnerability factors for avoidance. Consequently, we used functional magnetic resonance imaging (fMRI) to compare changes in brain activation associated with human avoidance and approach learning and modulation of avoidance neurocircuitry by experiential avoidance. fMRI tracked trial-by-trial increases in activation while adults learned through trial and error an avoidance response that prevented money loss and an approach response that produced money gain. Avoidance and approach cues elicited similar experience-dependent increases in activation in a fronto-limbic-striatal network. Positive and negative reinforcing outcomes (i.e., money gain and avoidance of loss) also elicited similar increases in activation in frontal and striatal regions. Finally, increased experiential avoidance and self-punishment coping was associated with decreased activation in medial/superior frontal regions, anterior cingulate, amygdala and hippocampus. These findings suggest avoidance and approach learning recruit a similar fronto-limbic-striatal network in healthy adults. Increased experiential avoidance also appears to be associated with reduced frontal and limbic reactivity in avoidance, establishing an important link between maladaptive avoidance coping and altered responses in avoidance neurocircuitry.
机译:自适应功能被认为反映了进场和回避神经系统之间的平衡,不平衡通常会产生病理形式的回避。在健康的成年人中,尚无证据表明在进路和回避神经系统与回避易感性因素对回避神经回路的调节之间达到平衡。因此,我们使用功能磁共振成像(fMRI)来比较与人类回避相关的大脑激活变化,并通过体验回避来学习和调节回避神经回路。 fMRI跟踪了试验的激活增加,而成年人通过试验和错误学习了避免金钱损失的回避反应和产生金钱收益的进场反应。回避和方法提示在额-边缘-纹状体网络中引起类似的依赖于经验的激活增加。正面和负面的强化结果(即金钱收益和避免损失)也引起额叶和纹状体区域激活的类似增加。最后,增加的体验回避和自我惩罚应对与内侧/上额叶区域,前扣带回,杏仁核和海马的激活减少有关。这些发现表明,在健康成年人中,避免和方法学习招募了类似的额叶-边缘-纹状体网络。经验性回避的增加似乎也与回避中的额叶和边缘反应减少有关,这在适应不良的回避应对和回避神经回路反应的改变之间建立了重要的联系。

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