Institute of Neurobiology, Bulgarian Academy of Sciences, Sofia, Bulgaria.
Institute for Working Learning Ageing (ALA), Bochum, Germany.
Clin Neurophysiol. 2024 Feb;158:137-148. doi: 10.1016/j.clinph.2023.12.132. Epub 2024 Jan 3.
Both cognitive and primary motor networks alter with advancing age in humans. The networks activated in response to external environmental stimuli supported by theta oscillations remain less well explored. The present study aimed to characterize the effects of aging on the functional connectivity of response-related theta networks during sensorimotor tasks.
Electroencephalographic signals were recorded in young and middle-to-older age adults during three tasks performed in two modalities, auditory and visual: a simple reaction task, a Go-NoGo task, and a choice-reaction task. Response-related theta oscillations were computed. The phase-locking value (PLV) was used to analyze the spatial synchronization of primary motor and motor control theta networks.
Performance was overall preserved in older adults. Independently of the task, aging was associated with reorganized connectivity of the contra-lateral primary motor cortex. In younger adults, it was synchronized with motor control regions (intra-hemispheric premotor/frontal and medial frontal). In older adults, it was only synchronized with intra-hemispheric sensorimotor regions.
Motor theta networks of older adults manifest a functional decoupling between the response-generating motor cortex and motor control regions, which was not modulated by task variables. The overall preserved performance in older adults suggests that the increased connectivity within the sensorimotor network is associated with an excessive reliance on sensorimotor feedback during movement execution compensating for a deficient cognitive regulation of motor regions during sensorimotor reactions.
New evidence is provided for the reorganization of motor networks during sensorimotor reactions already at the transition from middle to old age.
在人类中,认知和初级运动网络会随着年龄的增长而改变。对于由θ振荡支持的响应外部环境刺激的网络的研究还较少。本研究旨在描述在感觉运动任务中,年龄对响应相关θ网络的功能连接的影响。
在听觉和视觉两种模式下,对年轻和中老年成年人进行了三个任务的脑电图(EEG)记录:简单反应任务、Go-NoGo 任务和选择反应任务。计算了与反应相关的θ振荡。锁相值(PLV)用于分析初级运动和运动控制θ网络的空间同步。
无论任务如何,老年人的整体表现都保持不变。与年龄相关的是,对侧初级运动皮层的连接重新组织。在年轻成年人中,它与运动控制区域(半球间运动前区/额叶和内侧额叶)同步。在老年人中,它仅与半球间感觉运动区域同步。
老年人的运动θ网络表现出产生运动的运动皮层与运动控制区域之间的功能分离,而这种分离不受任务变量的调节。老年人整体表现保留,这表明在运动执行过程中,感觉运动网络内的连接增加,过度依赖于感觉运动反馈,以补偿感觉运动反应中运动区域认知调节不足。
新的证据表明,在从中年到老年的过渡期间,感觉运动反应过程中运动网络已经进行了重组。