Leibniz Research Centre for Working Environment and Human Factors at Technical University of Dortmund (IfADo), Germany.
Neuroimage. 2013 Jan 1;64:290-8. doi: 10.1016/j.neuroimage.2012.08.079. Epub 2012 Sep 4.
Aging affects the ability to focus attention on a given task and to ignore distractors. These functions subserve response control processes for which fronto-striatal networks have been shown to play an important role. Within these networks, the brain-derived-neurotrophic-factor (BDNF), which is known to underlie aging effects, plays a pivotal role. We investigated how cognitive subprocesses constituting a cycle of distraction, orientation and refocusing of attention are affected by the functional BDNF Val66Met polymorphism using event-related potentials (ERPs) in 122 healthy elderly. Using an auditory distraction paradigm we found that the Val/Val genotype confers a disadvantage to its carriers. This disadvantage was partly compensated by intensified attentional shifting mechanisms. It could be based on response selection processes being more vulnerable against interference from distractors in this genotype group. Processes reflecting transient sensory memory processes, or the re-orientation of attention were not affected by the BDNF Val66Met polymorphism, suggesting a higher importance of BDNF for mechanisms related to response control, than stimulus processing. The results add on recent literature showing that the Met allele confers some benefit to its carriers. We suggest an account for unifying different results of BDNF Val66Met association studies in executive functions, based on the role of BDNF in fronto-striatal circuits.
衰老会影响人们专注于特定任务和忽略干扰的能力。这些功能为反应控制过程提供支持,而额-纹状体网络已被证明在这些过程中发挥着重要作用。在这些网络中,脑源性神经营养因子(BDNF)是已知会影响衰老效应的关键因素。我们使用事件相关电位(ERP)技术,在 122 名健康老年人中,研究了构成注意力分散、定向和重新集中注意力循环的认知子过程如何受到功能性 BDNF Val66Met 多态性的影响。通过听觉分散范式,我们发现 Val/Val 基因型使其携带者处于劣势。这种劣势部分被强化的注意力转移机制所补偿。这可能基于反应选择过程在这种基因型组中更容易受到干扰的影响。反映瞬态感觉记忆过程或注意力重新定向的过程不受 BDNF Val66Met 多态性的影响,这表明 BDNF 对与反应控制机制相关的过程比对刺激处理更为重要。这些结果补充了最近的文献,表明 Met 等位基因使其携带者具有一定的优势。我们基于 BDNF 在额-纹状体回路中的作用,提出了一个解释,将不同的 BDNF Val66Met 与执行功能关联研究结果统一起来。