Turnock Matthew, Becker Suzanna
Department of Psychology, Neuroscience and Behaviour, McMaster University, Building 34, Room 312, 1280 Main Street West, Hamilton, Canada ON L8S 4K1.
Brain Res. 2008 Apr 2;1202:87-98. doi: 10.1016/j.brainres.2007.06.078. Epub 2007 Jul 26.
The hippocampus is thought to be critical for encoding contextually bound memories and setting the context for ongoing behavior. However, the mechanisms by which the hippocampal-cortical system controls behavior are poorly understood. We propose a computational model in which the hippocampus exerts contextual control over motivated behavior by gating prefrontal cortex inputs to the nucleus accumbens. The model integrates the episodic memory functions of the hippocampus, the prefrontal role in representing the motivational stimuli and cognitive control, and the role of striatal regions in conditioned learning within a single theoretical framework. Simulation results are consistent with the hypothesis that hippocampal-prefrontal interactions may act as the neural substrate that allows contextual cues to override conditioned responses at the level of the nucleus accumbens. Prefrontal and hippocampal input overrides the predominant CS-US association if the context is inconsistent, and promotes flexible selection of previously learned associations and behaviors. Simulated transection of the fornix, effectively eliminating hippocampal and prefrontal influence over the nucleus accumbens, abolishes normal contextual modulation of behavior. The model is consistent with a wide range of empirical data.
海马体被认为对于编码情境关联记忆以及为正在进行的行为设定情境至关重要。然而,海马体 - 皮质系统控制行为的机制却鲜为人知。我们提出了一个计算模型,其中海马体通过控制前额叶皮质向伏隔核的输入来对动机行为施加情境控制。该模型在单一理论框架内整合了海马体的情景记忆功能、前额叶在表征动机刺激和认知控制方面的作用,以及纹状体区域在条件学习中的作用。模拟结果与以下假设一致:海马体 - 前额叶相互作用可能作为神经基础,使情境线索能够在伏隔核水平上超越条件反应。如果情境不一致,前额叶和海马体输入会超越主要的条件刺激 - 无条件刺激关联,并促进对先前学习的关联和行为的灵活选择。模拟穹窿横切,有效消除海马体和前额叶对伏隔核的影响,会消除行为的正常情境调节。该模型与广泛的实证数据一致。