Park Seo-Yoon, Kang Tae-Woo, Koo Dong-Kyun
Department of Physical Therapy, College of Health and Welfare, Woosuk University, 443 Samnye-ro, Samnye-eup, Wanju-gun 55338, Republic of Korea.
HiVE Center, University-Industry Foundation, Wonkwang Health Science University, 514, Iksan-daero, Iksan-si 54538, Republic of Korea.
Bioengineering (Basel). 2024 Jul 23;11(8):742. doi: 10.3390/bioengineering11080742.
Vision and eye movements play a crucial role in maintaining postural stability. This study investigated the relationship between eye movements and postural control in healthy adults using mobile eye-tracking technology and posturography. Forty healthy participants underwent assessments of eye movements using a mobile eye-tracking system and postural stability using Tetrax posturography under various sensory conditions. Pearson correlation coefficients were computed to examine associations between eye movement parameters and postural control indices. Significant correlations were found between eye movement parameters and postural stability indices. Faster and more consistent horizontal eye movements were associated with better postural stability (r = -0.63, < 0.05). Eye movement speed variability positively correlated with weight distribution indices under normal eyes open (r = 0.65, < 0.05) and closed (r = 0.59, < 0.05) conditions. Coordination of horizontal and vertical eye movements positively correlated with postural control (r = 0.69, < 0.01). Negative correlations were observed between eye movement coordination and Fourier indices in various frequency bands ( < 0.05) and the stability index under different head positions ( < 0.05). The findings provide insights into sensory integration mechanisms underlying balance maintenance and highlight the importance of integrated sensory processing in postural stability. Eye movement assessments have potential applications in balance evaluation and fall risk prediction.
视觉和眼球运动在维持姿势稳定性方面起着至关重要的作用。本研究使用移动眼动追踪技术和姿势描记法,调查了健康成年人眼球运动与姿势控制之间的关系。40名健康参与者在各种感觉条件下,使用移动眼动追踪系统进行眼球运动评估,并使用Tetrax姿势描记法进行姿势稳定性评估。计算Pearson相关系数,以检验眼球运动参数与姿势控制指标之间的关联。发现眼球运动参数与姿势稳定性指标之间存在显著相关性。更快、更一致的水平眼球运动与更好的姿势稳定性相关(r = -0.63,<0.05)。在正常睁眼(r = 0.65,<0.05)和闭眼(r = 0.59,<0.05)条件下,眼球运动速度变异性与体重分布指标呈正相关。水平和垂直眼球运动的协调性与姿势控制呈正相关(r = 0.69,<0.01)。在各个频段(<0.05)观察到眼球运动协调性与傅里叶指数之间以及在不同头部位置下的稳定性指数之间呈负相关(<0.05)。这些发现为平衡维持背后的感觉整合机制提供了见解,并突出了综合感觉处理在姿势稳定性中的重要性。眼球运动评估在平衡评估和跌倒风险预测方面具有潜在应用。