Institute of Neuroscience and Medicine (INM-7: Brain and Behaviour), Forschungszentrum Jülich, Jülich 52425, Germany.
Institute of Systems Neuroscience, Medical Faculty, Heinrich Heine University Düsseldorf, Düsseldorf 40225, Germany.
Cereb Cortex. 2023 Sep 9;33(18):10155-10180. doi: 10.1093/cercor/bhad273.
Crosstalk between conflicting response codes contributes to interference in dual-tasking, an effect exacerbated in advanced age. Here, we investigated (i) brain activity correlates of such response-code conflicts, (ii) activity modulations by individual dual-task performance and related cognitive abilities, (iii) task-modulated connectivity within the task network, and (iv) age-related differences in all these aspects. Young and older adults underwent fMRI while responding to the pitch of tones through spatially mapped speeded button presses with one or two hands concurrently. Using opposing stimulus-response mappings between hands, we induced conflict between simultaneously activated response codes. These response-code conflicts elicited activation in key regions of the multiple-demand network. While thalamic and parietal areas of the conflict-related network were modulated by attentional, working-memory and task-switching abilities, efficient conflict resolution in dual-tasking mainly relied on increasing supplementary motor activity. Older adults showed non-compensatory hyperactivity in left superior frontal gyrus, and higher right premotor activity was modulated by working-memory capacity. Finally, connectivity between premotor or parietal seed regions and the conflict-sensitive network was neither conflict-specific nor age-sensitive. Overall, resolving dual-task response-code conflict recruited substantial parts of the multiple-demand network, whose activity and coupling, however, were only little affected by individual differences in task performance or age.
冲突反应码之间的串扰导致双重任务干扰,这种干扰在老年时更为严重。在这里,我们研究了(i)这种反应码冲突的大脑活动相关性,(ii)个体双重任务表现和相关认知能力的活动调制,(iii)任务网络内的任务调制连接,以及(iv)所有这些方面的年龄相关差异。年轻和老年成年人在进行 fMRI 时,通过同时用一只或两只手通过空间映射的快速按钮按压来响应音调的音高。我们使用手之间的相反刺激-反应映射,在同时激活的反应码之间产生冲突。这些反应码冲突引起了多需求网络关键区域的激活。虽然冲突相关网络的丘脑和顶叶区域受到注意力、工作记忆和任务转换能力的调制,但在双重任务中有效地解决冲突主要依赖于增加补充运动活动。老年人在左额上回显示出非补偿性的过度活跃,而较高的右前运动皮层活动则受到工作记忆能力的调制。最后,前运动或顶叶种子区域与冲突敏感网络之间的连通性既不是冲突特异性的,也不是年龄敏感性的。总的来说,解决双重任务反应码冲突需要调用多个需求网络的大部分部分,但其活动和耦合,然而,仅受到个体任务表现或年龄差异的很小影响。