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重新评估多巴胺在青少年冒险行为中的作用。

Reappraising the role of dopamine in adolescent risk-taking behavior.

机构信息

Universidade Federal de São Paulo. Escola Paulista de Medicina. Departamento de Psicobiologia. São Paulo - SP, Brasil.

Universidade Federal de São Paulo. Escola Paulista de Medicina. Departamento de Psicobiologia. São Paulo - SP, Brasil.

出版信息

Neurosci Biobehav Rev. 2023 Apr;147:105085. doi: 10.1016/j.neubiorev.2023.105085. Epub 2023 Feb 10.

Abstract

Adolescence is characterized by increased risk-taking, which is often ascribed to developmental changes in dopaminergic signaling. Popular models propose that these behaviors are caused by dopamine-induced hypersensitivity to rewards, which overrides adolescents' immature self-control mechanisms. However, these models are often based on oversimplified notions about the workings and functions of dopamine. Here we discuss the relationship between changes in the dopaminergic system and adolescent behavior in light of current theories/models about the functions of dopamine. We show that dopamine is linked to learning, adaptive decision-making under uncertainty, and increased motivation to work for rewards. Thus, changes in the dopaminergic system contribute to the maturation of cognitive control through various mechanisms, contrary to the false dichotomy between reward processing and self-control. Finally, we note that dopamine interacts with a number of other neuromodulator systems, which also change during adolescence, but that have been largely ignored in the field of adolescent development. A full understanding of adolescent behavior will require these neurochemicals and their interactions with dopamine to be taken into account.

摘要

青春期的特点是冒险行为增加,这通常归因于多巴胺信号传递的发育变化。流行的模型提出,这些行为是由多巴胺引起的对奖励的过度敏感引起的,这种过度敏感会超过青少年不成熟的自我控制机制。然而,这些模型通常基于对多巴胺的工作原理和功能的过于简化的概念。在这里,我们根据当前关于多巴胺功能的理论/模型,讨论了多巴胺系统的变化与青少年行为之间的关系。我们表明,多巴胺与学习、不确定条件下的适应性决策以及为获得奖励而增加的工作动力有关。因此,多巴胺系统的变化通过多种机制促进认知控制的成熟,与奖励处理和自我控制之间的错误二分法相反。最后,我们注意到,多巴胺与许多其他神经调质系统相互作用,这些系统在青春期也会发生变化,但在青少年发展领域基本上被忽视了。要全面了解青少年的行为,就需要考虑这些神经化学物质及其与多巴胺的相互作用。

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