胃口和厌恶刺激在核accumbens外D1-和D2-中等棘手神经元的动态表现
Ana Verónica Domingues1,2, Tawan T A Carvalho1,2, Gabriela J Martins3,4
1Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, Braga, Portugal.
Nature communications
|January 2, 2025
概括
核心聚合体 (NAc) D1 和 D2 中等棘状神经元 (MSN) 编码刺激价值,并在协会学习过程中被共同招募. D2-MSN对于消灭厌恶的关联至关重要.
科学领域:
- 神经科学是一个神经科学.
- 行为神经科学 行为神经科学
- 分子神经科学 分子神经科学
背景情况:
- 核心聚合体 (NAc) 对有动机的行为至关重要.
- 了解NAc中不同的神经元群体如何编码刺激价值和关联性学习至关重要.
研究的目的:
- 研究NAc外D1和D2中等棘状神经元 (MSN) 在编码食欲和厌恶刺激中的作用.
- 确定这些神经元群体在协会学习和学习协会的灭绝中的参与.
主要方法:
- 微内镜成像在小鼠跟踪NAcD1-和D2-MSN活动.
- 暴露于相反的价值和关联式学习范式的刺激.
- 对D2-MSN进行光遗传学操纵以建立因果关系.
主要成果:
- D1-和D2-MSN群体都区分了无条件刺激的价值,但不是预测线索.
- 在食欲和厌恶条件化过程中,D1和D2MSN被共同招募.
- 应急情况的变化导致了不对称的反应,D2-MSN中的活动变化更为明显.
- 光遗传学操纵证实了D2-MSN在厌恶性关联的灭绝中的必要性.
结论:
- NAc外神经元编码刺激价值,并参与帕夫洛夫的关联及其灭绝.
- D1和D2MSN在协会学习中发挥着并发作用.
- D2-MSN对于消灭厌恶性关联特别重要,揭示了动机行为背后的机制.
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