Neurology Unit, Medicine Section, Department of Neuroscience and Movement Science, Faculty of Science and Medicine, University of Fribourg, Fribourg, Switzerland.
Department of Radiology, Cantonal Hospital of Fribourg, Fribourg, Switzerland.
Neural Plast. 2018 Mar 11;2018:1598178. doi: 10.1155/2018/1598178. eCollection 2018.
Age-related changes in brain activation other than in the primary motor cortex are not well known with respect to dynamic balance control. Therefore, the current study aimed to explore age-related differences in the control of static and dynamic postural tasks using fMRI during mental simulation of balance tasks. For this purpose, 16 elderly (72 ± 5 years) and 16 young adults (27 ± 5 years) were asked to mentally simulate a static and a dynamic balance task by motor imagery (MI), action observation (AO), or the combination of AO and MI (AO + MI). Age-related differences were detected in the form of larger brain activations in elderly compared to young participants, especially in the challenging dynamic task when applying AO + MI. Interestingly, when MI (no visual input) was contrasted to AO (visual input), elderly participants revealed deactivation of subcortical areas. The finding that the elderly demonstrated overactivation in mostly cortical areas in challenging postural conditions with visual input (AO + MI and AO) but deactivation in subcortical areas during MI (no vision) may indicate that elderly individuals allocate more cortical resources to the internal representation of dynamic postural tasks. Furthermore, it might be assumed that they depend more strongly on visual input to activate subcortical internal representations.
关于动态平衡控制,除了初级运动皮层之外,大脑在年龄相关变化方面的激活尚不清楚。因此,本研究旨在通过 fMRI 探索在心理模拟平衡任务期间,静态和动态姿势任务控制方面的年龄相关差异。为此,要求 16 名老年人(72±5 岁)和 16 名年轻人(27±5 岁)通过运动想象(MI)、动作观察(AO)或 AO 和 MI 的组合(AO+MI)来心理模拟静态和动态平衡任务。与年轻参与者相比,老年人的大脑激活程度较大,表现出与年龄相关的差异,尤其是在具有挑战性的动态任务中,当应用 AO+MI 时。有趣的是,当 MI(无视觉输入)与 AO(视觉输入)进行对比时,老年参与者显示出皮质下区域的去激活。这一发现表明,在具有视觉输入的挑战性姿势条件下(AO+MI 和 AO),老年人在大脑皮质区域表现出过度激活,但在 MI(无视觉)期间在皮质下区域表现出去激活,这可能表明老年人分配更多的皮质资源用于动态姿势任务的内部表现。此外,可以假设他们更依赖视觉输入来激活皮质下的内部表现。