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Short-term mindfulness practice attenuates reward prediction errors signals in the brain

机译:短期正念练习会减弱大脑中的奖励预测错误信号

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摘要

Activity changes in dopaminergic neurons encode the ongoing discrepancy between expected and actual value of a stimulus, providing a teaching signal for a reward prediction process. Previous work comparing a cohort of long-term Zen meditators to controls demonstrated an attenuation of reward prediction signals to appetitive reward in the striatum. Using a cross-commodity design encompassing primary- and secondary-reward conditioning experiments, the present study asks the question of whether reward prediction signals are causally altered by mindfulness training in naïve subjects. Volunteers were randomly assigned to 8 weeks of mindfulness training (MT), active control training (CT), or a one-time mindfulness induction group (MI). We observed a decreased response to positive prediction errors in the putamen in the MT group compared to CT using both a primary and a secondary-reward experiment. Furthermore, the posterior insula showed greater activation to primary rewards, independently of their predictability, in the MT group, relative to CT and MI group. These results support the notion that increased attention to the present moment and its interoceptive features - a core component of mindfulness practice - may reduce predictability effects in reward processing, without dampening (in fact, enhancing) the response to the actual delivery of the stimulus.
机译:多巴胺能神经元的活动变化编码了预期和实际刺激值之间的持续差异,为奖励预测过程提供了教学信号。先前将长期禅修者与对照组进行比较的研究表明,奖励预测信号减弱了纹状体中的奖励。本研究使用包含初级和次级奖励条件实验的跨商品设计,提出了一个问题,即在幼稚的受试者中,正念训练是否会因果改变奖励预测信号。志愿者被随机分为8周的正念训练(MT),主动控制训练(CT)或一次正念诱导组(MI)。我们观察到与使用主要和次要奖励实验的CT相比,MT组的壳核对阳性预测错误的反应有所降低。此外,相对于CT和MI组,MT组中的后岛绝缘显示出对主要奖励的更大激活,而与它们的可预测性无关。这些结果支持这样一种观念,即对当前时刻及其感知功能(正念练习的核心组成部分)的更多关注可能会降低奖励过程中的可预测性,而不会减弱(实际上是增强)对实际刺激的响应。

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