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Organization of Neural Systems for Aversive Information Processing: Pain, Error, and Punishment

机译:神经系统的厌恶信息处理的组织:痛苦,错误和惩罚

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The avoidance of aversive events is critically important for the survival of organisms. It has been proposed that the medial pain system, including the amygdala, periaqueductal gray (PAG), and anterior cingulate cortex (ACC), contains the neural circuitry that signals pain affect and negative value. This system appears to have multiple defense mechanisms, such as rapid stereotyped escape, aversive association learning, and cognitive adaptation. These defense mechanisms vary in speed and flexibility, reflecting different strategies of self-protection. Over the course of evolution, the medial pain system appears to have developed primitive, associative, and cognitive solutions for aversive avoidance. There may be a functional grading along the caudal-rostral axis, such that the amygdala-PAG system underlies automatic and autonomic responses, the amygdala-orbitofrontal system contributes to associative learning, and the ACC controls cognitive processes in cooperation with the lateral prefrontal cortex. A review of behavioral and physiological studies on the aversive system is presented, and a conceptual framework for understanding the neural organization of the aversive avoidance system is proposed.
机译:避免厌恶事件对于生物的生存至关重要。已经提出,包括杏仁核,导水管周围的灰色(PAG)和前扣带回皮层(ACC)在内的内侧疼痛系统包含神经信号,表明疼痛的影响和负值。该系统似乎具有多种防御机制,例如快速定型逃避,厌恶联想学习和认知适应。这些防御机制的速度和灵活性各不相同,反映出不同的自我保护策略。在进化过程中,内侧疼痛系统似乎已发展出原始的,联想的和认知的解决方案,可以避免厌恶。沿尾-尾轴可能有功能分级,这样杏仁核-PAG系统成为自动和自主反应的基础,杏仁核-眶额系统有助于联想学习,而ACC与外侧额额叶皮层合作控制认知过程。提出了对厌恶系统的行为和生理研究的综述,并提出了一个概念框架,以了解厌恶回避系统的神经组织。

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