Marois R, Larson J M, Chun M M, Shima D
Department of Psychology, Vanderbilt University, 530 Wilson Hall, 111 21st Ave, Nashville, Tennessee 37203, USA.
Psychol Res. 2006 Nov;70(6):436-47. doi: 10.1007/s00426-005-0022-6. Epub 2005 Nov 11.
It is difficult to perform two tasks at the same time. Such performance limitations are exemplified by the psychological refractory period (PRP): when participants make distinct motor responses to two stimuli presented in rapid succession, the response to the second stimulus is increasingly slowed as the time interval between the two stimuli is decreased. This impairment is thought to reflect a central limitation in selecting the appropriate response to each stimulus, but not in perceptually encoding the stimuli. In the present study, it was sought to determine which brain regions are specifically involved in response selection under dual-task conditions by contrasting fMRI brain activity measured from a response selection manipulation that increased dual-task costs, with brain activity measured from an equally demanding manipulation that affected perceptual visibility. While a number of parieto-frontal areas involved in response selection were activated by both dual-task manipulations, the dorsal pre-motor cortex, and to a lesser extent the inferior frontal cortex, were specifically engaged by the response selection manipulation. These results suggest that the pre-motor cortex is an important neural locus of response selection limitation under dual-task situations.
同时执行两项任务是困难的。这种表现限制以心理不应期(PRP)为例:当参与者对快速连续呈现的两个刺激做出不同的运动反应时,随着两个刺激之间的时间间隔减小,对第二个刺激的反应会越来越慢。这种损害被认为反映了在为每个刺激选择适当反应时的中枢限制,而不是在对刺激进行感知编码时的限制。在本研究中,通过对比从增加双任务成本的反应选择操作中测量的功能磁共振成像(fMRI)脑活动,与从影响感知可见性的同等要求的操作中测量的脑活动,试图确定在双任务条件下哪些脑区专门参与反应选择。虽然参与反应选择的一些顶叶-额叶区域在两种双任务操作中均被激活,但背侧运动前皮层以及程度较轻的额下回皮层在反应选择操作中被特别激活。这些结果表明,运动前皮层是双任务情况下反应选择限制的一个重要神经位点。