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缰核-中缝背核 5-羟色胺能回路编码了一种厌恶预期价值,这对于适应性主动回避危险是必不可少的。

The habenulo-raphe serotonergic circuit encodes an aversive expectation value essential for adaptive active avoidance of danger.

机构信息

Laboratory for Developmental Gene Regulation, RIKEN Brain Science Institute, Saitama 351-0198, Japan; Laboratory for Molecular Brain Science, Department of Life Science and Medical Bioscience, Waseda University, Tokyo 162-8430, Japan.

Laboratory for Developmental Gene Regulation, RIKEN Brain Science Institute, Saitama 351-0198, Japan.

出版信息

Neuron. 2014 Dec 3;84(5):1034-48. doi: 10.1016/j.neuron.2014.10.035. Epub 2014 Nov 20.

Abstract

Anticipation of danger at first elicits panic in animals, but later it helps them to avoid the real threat adaptively. In zebrafish, as fish experience more and more danger, neurons in the ventral habenula (vHb) showed tonic increase in the activity to the presented cue and activated serotonergic neurons in the median raphe (MR). This neuronal activity could represent the expectation of a dangerous outcome and be used for comparison with a real outcome when the fish is learning how to escape from a dangerous to a safer environment. Indeed, inhibiting synaptic transmission from vHb to MR impaired adaptive avoidance learning, while panic behavior induced by classical fear conditioning remained intact. Furthermore, artificially triggering this negative outcome expectation signal by optogenetic stimulation of vHb neurons evoked place avoidance behavior. Thus, vHb-MR circuit is essential for representing the level of expected danger and behavioral programming to adaptively avoid potential hazard.

摘要

动物在最初感知到危险时会产生恐慌,但随后这种感知会帮助它们适应性地避免真正的威胁。在斑马鱼中,随着鱼类经历越来越多的危险,腹侧缰核(vHb)中的神经元对呈现的线索表现出紧张性的活动增加,并激活中缝核(MR)中的 5-羟色胺能神经元。这种神经元活动可以代表对危险结果的预期,并在鱼类学习如何从危险环境逃到更安全的环境时,与实际结果进行比较。事实上,抑制 vHb 到 MR 的突触传递会损害适应性回避学习,而经典的恐惧条件反射引起的恐慌行为仍然完好无损。此外,通过光遗传学刺激 vHb 神经元人为触发这种负面结果预期信号会引起位置回避行为。因此,vHb-MR 回路对于表示预期危险的水平和适应性回避潜在危险的行为编程是必不可少的。

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