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大脑与努力:健康参与者和工作记忆缺陷患者的大脑激活与努力相关的工作记忆。

Brain and effort: brain activation and effort-related working memory in healthy participants and patients with working memory deficits.

机构信息

Radiology, Department of Medical and Health Sciences, Linköping University Linköping, Sweden ; Center for Medical Image Science and Visualization (CMIV), Linköping University Linköping, Sweden.

出版信息

Front Hum Neurosci. 2013 Apr 17;7:140. doi: 10.3389/fnhum.2013.00140. eCollection 2013.

Abstract

UNLABELLED

Despite the interest in the neuroimaging of working memory, little is still known about the neurobiology of complex working memory in tasks that require simultaneous manipulation and storage of information. In addition to the central executive network, we assumed that the recently described salience network [involving the anterior insular cortex (AIC) and the anterior cingulate cortex (ACC)] might be of particular importance to working memory tasks that require complex, effortful processing.

METHOD

Healthy participants (n = 26) and participants suffering from working memory problems related to the Kleine-Levin syndrome (KLS) (a specific form of periodic idiopathic hypersomnia; n = 18) participated in the study. Participants were further divided into a high- and low-capacity group, according to performance on a working memory task (listening span). In a functional magnetic resonance imaging (fMRI) study, participants were administered the reading span complex working memory task tapping cognitive effort.

PRINCIPAL FINDINGS

The fMRI-derived blood oxygen level dependent (BOLD) signal was modulated by (1) effort in both the central executive and the salience network and (2) capacity in the salience network in that high performers evidenced a weaker BOLD signal than low performers. In the salience network there was a dichotomy between the left and the right hemisphere; the right hemisphere elicited a steeper increase of the BOLD signal as a function of increasing effort. There was also a stronger functional connectivity within the central executive network because of increased task difficulty.

CONCLUSION

The ability to allocate cognitive effort in complex working memory is contingent upon focused resources in the executive and in particular the salience network. Individual capacity during the complex working memory task is related to activity in the salience (but not the executive) network so that high-capacity participants evidence a lower signal and possibly hence a larger dynamic response.

摘要

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尽管人们对工作记忆的神经影像学很感兴趣,但对于需要同时进行信息操作和存储的复杂工作记忆的神经生物学仍知之甚少。除了中央执行网络外,我们还假设最近描述的突显网络[涉及前脑岛皮层(AIC)和前扣带皮层(ACC)]对于需要复杂、费力处理的工作记忆任务可能特别重要。

方法

健康参与者(n=26)和患有与 Kleine-Levin 综合征(KLS)相关的工作记忆问题的参与者(周期性特发性嗜睡症的一种特定形式;n=18)参加了这项研究。根据工作记忆任务(听力跨度)的表现,参与者进一步分为高能力组和低能力组。在功能磁共振成像(fMRI)研究中,参与者接受了阅读跨度复杂工作记忆任务,以评估认知努力。

主要发现

功能磁共振成像(fMRI)衍生的血氧水平依赖(BOLD)信号受到以下因素的调制:(1)中央执行和突显网络中的努力,以及(2)突显网络中的能力,即高表现者的 BOLD 信号比低表现者弱。在突显网络中,左右半球之间存在二分法;右半球的 BOLD 信号随着努力的增加而呈陡峭增加。由于任务难度的增加,中央执行网络内的功能连接也更强。

结论

在复杂工作记忆中分配认知努力的能力取决于执行功能的集中资源,特别是突显网络。在复杂工作记忆任务中的个体能力与突显网络(而不是执行网络)的活动有关,因此高能力参与者的信号较低,可能具有更大的动态响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c330/3628360/999165ca0146/fnhum-07-00140-g0001.jpg

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