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论超级任务执行者与高效多任务处理的神经基础。

On supertaskers and the neural basis of efficient multitasking.

作者信息

Medeiros-Ward Nathan, Watson Jason M, Strayer David L

机构信息

Department of Psychology, University of Utah, 380 S. 1530 E. Room 502, Salt Lake City, UT, 84112, USA.

出版信息

Psychon Bull Rev. 2015 Jun;22(3):876-83. doi: 10.3758/s13423-014-0713-3.

Abstract

The present study used brain imaging to determine the neural basis of individual differences in multitasking, the ability to successfully perform at least two attention-demanding tasks at once. Multitasking is mentally taxing and, therefore, should recruit the prefrontal cortex to maintain task goals when coordinating attentional control and managing the cognitive load. To investigate this possibility, we used functional neuroimaging to assess neural activity in both extraordinary multitaskers (Supertaskers) and control subjects who were matched on working memory capacity. Participants performed a challenging dual N-back task in which auditory and visual stimuli were presented simultaneously, requiring independent and continuous maintenance, updating, and verification of the contents of verbal and spatial working memory. With the task requirements and considerable cognitive load that accompanied increasing N-back, relative to the controls, the multitasking of Supertaskers was characterized by more efficient recruitment of anterior cingulate and posterior frontopolar prefrontal cortices. Results are interpreted using neuropsychological and evolutionary perspectives on individual differences in multitasking ability and the neural correlates of attentional control.

摘要

本研究采用脑成像技术来确定多任务处理中个体差异的神经基础,多任务处理即同时成功执行至少两项需要注意力的任务的能力。多任务处理对大脑有较高要求,因此,在协调注意力控制和管理认知负荷时,应该会调动前额叶皮层来维持任务目标。为了探究这种可能性,我们使用功能神经成像技术评估了超级多任务者(Supertaskers)和在工作记忆能力上与之匹配的对照组受试者的神经活动。参与者执行了一项具有挑战性的双重n-back任务,其中听觉和视觉刺激同时呈现,需要对言语和空间工作记忆的内容进行独立且持续的维持、更新和验证。随着n-back任务要求和伴随而来的认知负荷增加,相对于对照组,超级多任务者的多任务处理表现为前扣带回和前额叶后部更有效地被调动。我们从神经心理学和进化的角度对多任务能力的个体差异以及注意力控制的神经关联进行了解释。

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