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老化对概率三元组学习任务中内隐联想学习的神经基础的影响。

The effects of aging on the neural basis of implicit associative learning in a probabilistic triplets learning task.

机构信息

Department of Psychology, Georgetown University, Washington, DC 20057, USA.

出版信息

J Cogn Neurosci. 2012 Feb;24(2):451-63. doi: 10.1162/jocn_a_00116. Epub 2011 Aug 23.

Abstract

Few studies have investigated how aging influences the neural basis of implicit associative learning, and available evidence is inconclusive. One emerging behavioral pattern is that age differences increase with practice, perhaps reflecting the involvement of different brain regions with training. Many studies report hippocampal involvement early on with learning becoming increasingly dependent on the caudate with practice. We tested the hypothesis that the contribution of these regions to learning changes with age because of differential age-related declines in the striatum and hippocampi. We assessed age-related differences in brain activation during implicit associative learning using the Triplets Learning Task. Over three event-related fMRI runs, 11 younger and 12 healthy older adults responded to only the third (target) stimulus in sequences of three stimuli ("triplets") by corresponding key press. Unbeknown to participants, the first stimulus' location predicted one target location for 80% of trials and another target location for 20% of trials. Both age groups learned associative regularities but differences in favor of the younger adults emerged with practice. The neural basis of learning (response to predictability) was examined by identifying regions that showed a greater response to triplets that occurred more frequently. Both age groups recruited the hippocampus early, but with training, the younger adults recruited their caudate whereas the older adults continued to rely on their hippocampus. This pattern enables older adults to maintain near-young levels of performance early in training, but not later, and adds to evidence that implicit associative learning is supported by different brain networks in younger and older adults.

摘要

很少有研究调查衰老如何影响内隐联想学习的神经基础,而且现有证据尚无定论。一种新兴的行为模式是,年龄差异随着练习而增加,这可能反映了不同的大脑区域与训练的参与。许多研究报告说,海马体在学习的早期就参与其中,随着练习的进行,学习越来越依赖于尾状核。我们检验了这样一个假设,即由于纹状体和海马体的年龄相关衰退程度不同,这些区域对学习的贡献会随着年龄的增长而发生变化。我们使用三联体学习任务评估了内隐联想学习过程中大脑激活的年龄相关性差异。在三个事件相关 fMRI 运行中,11 名年轻参与者和 12 名健康的老年参与者通过相应的按键响应仅对三个刺激序列中的第三个(目标)刺激做出反应。参与者不知道的是,第一个刺激的位置在 80%的试验中预测一个目标位置,在 20%的试验中预测另一个目标位置。两个年龄组都学习了联想规律,但随着练习,年轻组的优势更加明显。通过识别对更频繁出现的三联体反应更大的区域,来研究学习的神经基础(对可预测性的反应)。两个年龄组都在早期就招募了海马体,但随着训练,年轻组招募了他们的尾状核,而老年组则继续依赖他们的海马体。这种模式使老年参与者能够在训练早期保持接近年轻的水平,但不能持续到后期,这增加了证据表明,内隐联想学习在年轻和老年参与者中由不同的大脑网络支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/234d/3629094/8d435b3ba7f9/nihms452922f1.jpg

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