Junior research group FANS (Pedestrian Assistance System for Older Road User), Technische Universitaet Berlin, 10587, Berlin, Germany.
Biological Psychology and Neuroergonomics, Technische Universitaet Berlin, 10623, Berlin, Germany.
Sci Rep. 2021 Aug 9;11(1):16110. doi: 10.1038/s41598-021-94874-2.
The parallel execution of two motor tasks can lead to performance decrements in either one or both of the tasks. Age-related declines can further magnify the underlying competition for cognitive resources. However, little is known about the neural dynamics underlying motor resource allocation during dual-task walking. To better understand motor resource conflicts, this study investigated sensorimotor brain rhythms in younger and older adults using a dual-task protocol. Time-frequency data from two independent component motor clusters were extracted from electroencephalography data during sitting and walking with an additional task requiring manual responses. Button press-related desynchronization in the alpha and beta frequency range were analyzed for the impact of age (< 35 years, ≥ 70 years) and motor task (sitting, walking). Button press-related desynchronization in the beta band was more pronounced for older participants and both age groups demonstrated less pronounced desynchronizations in both frequency bands during walking compared to sitting. Older participants revealed less power modulations between sitting and walking, and less pronounced changes in beta and alpha suppression were associated with greater slowing in walking speed. Our results indicate age-specific allocations strategies during dual-task walking as well as interdependencies of concurrently performed motor tasks reflected in modulations of sensorimotor rhythms.
同时执行两个运动任务可能会导致一个或两个任务的表现下降。与年龄相关的衰退会进一步放大认知资源竞争的基础。然而,对于双任务行走过程中运动资源分配的神经动力学知之甚少。为了更好地理解运动资源冲突,本研究使用双任务协议调查了年轻和老年成年人的感觉运动脑节律。从坐姿和行走时的脑电图数据中提取了两个独立成分运动簇的时频数据,外加需要手动响应的任务。分析了与年龄(<35 岁,≥70 岁)和运动任务(坐姿、行走)相关的按钮按下相关去同步化。与坐姿相比,行走时β频带的去同步化在老年参与者中更为明显,两个年龄组在两个频带中的去同步化都不太明显。与行走速度较慢相关的是,老年参与者在坐姿和行走之间的功率调制较少,β和α抑制的变化不明显。我们的结果表明,在双任务行走中存在特定于年龄的分配策略,以及同时进行的运动任务之间的相互依存关系,反映在感觉运动节律的调制中。