Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.
Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.
Neuroscience. 2021 Nov 21;477:50-62. doi: 10.1016/j.neuroscience.2021.10.004. Epub 2021 Oct 8.
The prefrontal cortex (PFC) is involved in attention, motor planning, and executive functions. In addition, it is known that postural control and cognitive performance are affected during dual-task paradigms, suggesting that postural control and cognition use common areas of the brain. Although postural control and cognition have been used as interfering dual tasks, the neuronal mechanisms underlying interference are not fully understood. We simultaneously performed postural and cognitive tasks in healthy young adults and evaluated activity in the PFC using near-infrared spectrometry. The displacement of the center of pressure (COP) is reduced by cognitive tasks. Difficult postural tasks increased the relative proportion and amplitude of postural sway in the high-frequency bandwidth, related to the adjustment of postural sway. Although the cognitive tasks did not affect the relative proportion of each frequency bandwidth, the amplitudes were selectively reduced. The postural task-dependent change in PFC activity was correlated with the relative proportion and amplitude of postural sway in the high-frequency bandwidth of the COP movement. Cognitive task-dependent changes in PFC activity were not correlated with postural sway. Cognitive performance was better in unipedal standing than bipedal standing. These findings suggest that postural tasks affect cognitive performance via the activation of the PFC, but cognitive tasks affect postural control through a different mechanism.
前额叶皮层(PFC)参与注意力、运动规划和执行功能。此外,已知在双重任务范式中,姿势控制和认知表现会受到影响,这表明姿势控制和认知使用大脑的共同区域。尽管姿势控制和认知已被用作干扰性双重任务,但干扰的神经机制尚不完全清楚。我们在健康的年轻成年人中同时进行姿势和认知任务,并使用近红外光谱评估 PFC 的活动。认知任务会减少身体重心(COP)的位移。困难的姿势任务增加了高频带宽中姿势摆动的相对比例和幅度,与姿势摆动的调整有关。虽然认知任务不会影响每个频带的相对比例,但幅度会选择性降低。PFC 活动随姿势任务的变化与 COP 运动高频带宽中姿势摆动的相对比例和幅度相关。PFC 活动随认知任务的变化与姿势摆动无关。单足站立的认知表现优于双足站立。这些发现表明,姿势任务通过 PFC 的激活影响认知表现,但认知任务通过不同的机制影响姿势控制。