神经科学
伏隔核
神经可塑性
奶油
突触可塑性
海马体
光遗传学
心理学
可塑性
记忆巩固
被盖腹侧区
长时程增强
扁桃形结构
树突棘
中棘神经元
生物神经网络
海马结构
生物
转录因子
中枢神经系统
受体
基因
生物化学
作者
Arianna Rinaldi,Alberto Oliverio,Andrea Mele
出处
期刊:Reviews in The Neurosciences
[De Gruyter]
日期:2012-01-01
卷期号:23 (5-6)
被引量:23
标识
DOI:10.1515/revneuro-2012-0070
摘要
Research on the function of the nucleus accumbens, the most ventral component of the striatal complex, has traditionally focused on locomotor activity, reward, motivation and addiction. However, based on the existence of projections to the nucleus accumbens from the allocortical regions involved in spatial navigation, it has been suggested that this structure plays a role in spatial learning and memory. Lesion and neuropharmacological studies confirm this view, also revealing the complex dynamics of the receptors involved in these processes. Moreover, the effects of post-training intra-nucleus accumbens drug administrations demonstrate the necessity of off-line neural activity within this structure in order to consolidate spatial memory. Blockade of molecular processes implicated in synaptic plasticity, such as cAMP response element-binding protein (CREB)-induced transcription or extracellular matrix remodeling, provides further experimental support to this hypothesis. These observations imply that experience-dependent synaptic plasticity responsible for long-term stabilization of spatial information might occur within the nucleus accumbens, similarly to what has been observed in the hippocampus. This suggests that a comprehensive understanding of spatial memory processing should be viewed in the context of a wider neural circuit.
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