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一种潜在的空间工作记忆训练任务,可同时提高情景记忆和流体智力。

A potential spatial working memory training task to improve both episodic memory and fluid intelligence.

机构信息

Department of Experimental Psychology, University of Oxford, Oxford, United Kingdom.

出版信息

PLoS One. 2012;7(11):e50431. doi: 10.1371/journal.pone.0050431. Epub 2012 Nov 28.

Abstract

One current challenge in cognitive training is to create a training regime that benefits multiple cognitive domains, including episodic memory, without relying on a large battery of tasks, which can be time-consuming and difficult to learn. By giving careful consideration to the neural correlates underlying episodic and working memory, we devised a computerized working memory training task in which neurologically healthy participants were required to monitor and detect repetitions in two streams of spatial information (spatial location and scene identity) presented simultaneously (i.e. a dual n-back paradigm). Participants' episodic memory abilities were assessed before and after training using two object and scene recognition memory tasks incorporating memory confidence judgments. Furthermore, to determine the generalizability of the effects of training, we also assessed fluid intelligence using a matrix reasoning task. By examining the difference between pre- and post-training performance (i.e. gain scores), we found that the trainers, compared to non-trainers, exhibited a significant improvement in fluid intelligence after 20 days. Interestingly, pre-training fluid intelligence performance, but not training task improvement, was a significant predictor of post-training fluid intelligence improvement, with lower pre-training fluid intelligence associated with greater post-training gain. Crucially, trainers who improved the most on the training task also showed an improvement in recognition memory as captured by d-prime scores and estimates of recollection and familiarity memory. Training task improvement was a significant predictor of gains in recognition and familiarity memory performance, with greater training improvement leading to more marked gains. In contrast, lower pre-training recollection memory scores, and not training task improvement, led to greater recollection memory performance after training. Our findings demonstrate that practice on a single working memory task can potentially improve aspects of both episodic memory and fluid intelligence, and that an extensive training regime with multiple tasks may not be necessary.

摘要

目前认知训练面临的一个挑战是,创造一种既能使多个认知领域(包括情景记忆)受益,又不依赖于大量任务(这些任务可能既耗时又难以学习)的训练方案。通过仔细考虑情景记忆和工作记忆的神经相关物,我们设计了一种计算机化的工作记忆训练任务,要求神经健康的参与者同时监控和检测两串空间信息(空间位置和场景身份)的重复(即双 n 回范式)。在训练前后,我们使用两个包含记忆置信度判断的物体和场景识别记忆任务来评估参与者的情景记忆能力。此外,为了确定训练效果的可推广性,我们还使用矩阵推理任务评估了流体智力。通过检查训练前后的表现差异(即增益分数),我们发现与非训练者相比,训练者在 20 天后流体智力显著提高。有趣的是,训练前的流体智力表现,而不是训练任务的改善,是训练后流体智力提高的一个显著预测因素,较低的训练前流体智力与较大的训练后增益相关。至关重要的是,在训练任务上提高最多的训练者在识别记忆方面也表现出了提高,这体现在 d-prime 分数和对再认和熟悉记忆的估计上。训练任务的改善是识别和熟悉记忆表现提高的显著预测因素,训练改善越大,提高越显著。相比之下,较低的训练前再认记忆分数,而不是训练任务的改善,导致训练后再认记忆表现的提高。我们的研究结果表明,单一工作记忆任务的练习可以潜在地提高情景记忆和流体智力的各个方面,并且可能不需要进行具有多个任务的广泛训练方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c347/3508978/bb0ce507cf56/pone.0050431.g001.jpg

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