FIDMAG Germanes Hospitalàries Research Foundation, Dr Pujadas, 38, 08830, Sant Boi de Llobregat, Barcelona, Spain.
CIBERSAM (Centro de Investigación Biomédica en Red de Salud Mental), Barcelona, Spain.
Brain Imaging Behav. 2021 Oct;15(5):2317-2329. doi: 10.1007/s11682-020-00425-0. Epub 2021 Jan 26.
The Computerised Multiple Elements Test (CMET) is a novel executive task to assess goal management and maintenance suitable for use within the fMRI environment. Unlike classical executive paradigms, it resembles neuropsychological multi-elements tests that capture goal management in a more ecological way, by requiring the participant to switch between four simple games within a specified time period. The present study aims to evaluate an fMRI version of the CMET and examine its brain correlates. Thirty-one healthy participants performed the task during fMRI scanning. During each block, they were required to play four simple games, with the transition between games being made either voluntarily (executive condition) or automatically (control condition). The executive condition was associated with increased activity in fronto-parietal and cingulo-opercular regions, with anterior insula activity linked to better task performance. In an additional analysis, the activated regions showed to form functional networks during resting-state and to overlap the executive fronto-parietal and cingulo-opercular networks identified in resting-state with independently defined seeds. These results show the ability of the CMET to elicit activity in well-known executive networks, becoming a potential tool for the study of executive impairment in neurological and neuropsychiatric populations in a more ecological way than classical paradigms.
计算机化多项元素测试(CMET)是一种新颖的执行任务,可评估目标管理和维持能力,适合在 fMRI 环境中使用。与经典的执行范式不同,它类似于神经心理学的多项元素测试,通过要求参与者在指定时间内切换四个简单游戏,以更生态的方式捕捉目标管理。本研究旨在评估 CMET 的 fMRI 版本,并研究其大脑相关性。31 名健康参与者在 fMRI 扫描期间执行了该任务。在每个块中,他们都需要玩四个简单的游戏,游戏之间的转换可以是自愿的(执行条件)或自动的(控制条件)。执行条件与额顶叶和扣带回-顶叶区域的活动增加有关,前岛叶的活动与更好的任务表现有关。在额外的分析中,激活的区域在静息状态下形成功能网络,并且与使用独立定义的种子在静息状态下识别的执行额顶叶和扣带回-顶叶网络重叠。这些结果表明,CMET 有能力引起众所周知的执行网络的活动,成为研究神经和神经精神人群执行障碍的一种潜在工具,比经典范式更具生态性。