Departamento de Psicobiología y Metodología de las CC, Universidad de Málaga, Campus de Teatinos, E-29071 Málaga, Spain.
Rev Neurosci. 2011;22(3):267-83. doi: 10.1515/RNS.2011.027. Epub 2011 May 13.
The hippocampus is a key brain structure involved in the short- and long-term processing of declarative memory. Since adult hippocampal neurogenesis was first found, numerous studies have tried to establish the contribution of newborn neurons to hippocampus-dependent cognitive functions. However, this large amount of research has generated contradictory results. In this paper, we review the body of evidence investigating the relationship between hippocampal neurogenesis and learning to conclude the functional role of adult-born hippocampal neurons. First, factors that could explain discrepancies among experiments are taken into account. Then, in addition to methodological differences, we emphasize the importance of the age of the newborn neurons studied, as to how their maturation influences both their properties and potential functionality. Next, we discuss which declarative memory components could require involvement of adult hippocampal neurogenesis, taking into consideration the representational demands of the task, its difficulty and the level of performance reached by the subject. Finally, other factors that could modulate neurogenesis and memory, such as stress levels or previous experience of the animal, should also be taken into consideration in interpreting experiments focused on neurogenesis. In conclusion, our analysis of published studies suggests that new adult-born neurons, under certain circumstances, have a crucial and irreplaceable role in hippocampal learning.
海马体是参与短期和长期陈述性记忆处理的关键大脑结构。自从首次发现成年海马神经发生以来,许多研究试图确定新生神经元对海马依赖认知功能的贡献。然而,大量的研究产生了相互矛盾的结果。在本文中,我们回顾了调查海马神经发生与学习之间关系的证据,以总结成年海马神经元的功能作用。首先,考虑到可以解释实验差异的因素。然后,除了方法学上的差异,我们强调了所研究的新生神经元年龄的重要性,因为它们的成熟会影响它们的特性和潜在功能。接下来,我们讨论了哪些陈述性记忆成分可能需要成年海马神经发生的参与,同时考虑到任务的表示需求、难度以及被试的表现水平。最后,还应该考虑其他可以调节神经发生和记忆的因素,例如动物的应激水平或先前的经验,这些因素也会影响专注于神经发生的实验的解释。总之,我们对已发表研究的分析表明,在某些情况下,新的成年新生神经元在海马体学习中具有关键且不可替代的作用。