Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
Novartis Institutes for Biomedical Research, Novartis Pharma AG, Basel, Switzerland.
Nature. 2021 Apr;592(7853):267-271. doi: 10.1038/s41586-021-03301-z. Epub 2021 Mar 3.
The behaviour of an animal is determined by metabolic, emotional and social factors. Depending on its state, an animal will focus on avoiding threats, foraging for food or on social interactions, and will display the appropriate behavioural repertoire. Moreover, survival and reproduction depend on the ability of an animal to adapt to changes in the environment by prioritizing the appropriate state. Although these states are thought to be associated with particular functional configurations of large-brain systems, the underlying principles are poorly understood. Here we use deep-brain calcium imaging of mice engaged in spatial or social exploration to investigate how these processes are represented at the neuronal population level in the basolateral amygdala, which is a region of the brain that integrates emotional, social and metabolic information. We demonstrate that the basolateral amygdala encodes engagement in exploratory behaviour by means of two large, functionally anticorrelated ensembles that exhibit slow dynamics. We found that spatial and social exploration were encoded by orthogonal pairs of ensembles with stable and hierarchical allocation of neurons according to the saliency of the stimulus. These findings reveal that the basolateral amygdala acts as a low-dimensional, but context-dependent, hierarchical classifier that encodes state-dependent behavioural repertoires. This computational function may have a fundamental role in the regulation of internal states in health and disease.
动物的行为是由代谢、情绪和社会因素决定的。根据其状态,动物将专注于避免威胁、觅食或社交互动,并表现出适当的行为组合。此外,生存和繁殖取决于动物通过优先考虑适当的状态来适应环境变化的能力。尽管这些状态被认为与大脑系统的特定功能配置有关,但基本原理还知之甚少。在这里,我们使用在进行空间或社交探索的小鼠的深部脑钙成像,来研究这些过程在大脑中整合情感、社交和代谢信息的外侧杏仁核的神经元群体水平上是如何表现的。我们证明,外侧杏仁核通过两个大的、功能上相互拮抗的、表现出缓慢动力学的集合来编码探索性行为的参与。我们发现,空间和社交探索由正交的集合对进行编码,根据刺激的显著性,神经元的分配是稳定和分层的。这些发现表明,外侧杏仁核作为一个低维但上下文相关的分层分类器,对状态相关的行为组合进行编码。这种计算功能可能在健康和疾病中调节内部状态方面起着基础性作用。