Department of Motor Behavior, Faculty of Sport Sciences, Alzahra University, Tehran, Iran; Department of Neuroscience, University of Montreal, Montreal, QC, Canada.
Department of Motor Behavior, Faculty of Sport Sciences, Alzahra University, Tehran, Iran.
J Biomech. 2023 Jun;155:111650. doi: 10.1016/j.jbiomech.2023.111650. Epub 2023 May 20.
Vision, as queen of the senses, plays a critical role in guiding locomotion. Little is known about the effects of vision on gait coordination in terms of variability. The uncontrolled manifold (UCM) approach offers a window to the structure of motor variability that has been difficult to obtain from the traditional correlation analysis. In this study, we used the UCM analysis to quantify how the lower limb motion is coordinated to control the center of mass (COM) while walking under different visual conditions. We also probed how synergy strength evolved along the stance phase. Ten healthy participants walked on the treadmill with and without visual information. Leg joint angle variance with respect to the whole-body COM was partitioned into good (i.e., the one that kept the COM) and bad (i.e., the one that changed the COM) variances. We observed that after vision was eliminated, both variances increased throughout the stance phase while the strength of the synergy (the normalized difference between the two variances) decreased significantly and even reduced to zero at heel contact. Thus, walking with restricted vision alters the strength of the kinematic synergy to control COM in the plane of progression. We also found that the strength of this synergy varied across different walking phases and gait events in both visual conditions. We concluded that the UCM analysis can quantify altered coordination of COM when vision is blocked and sheds insights on the role of vision in the synergistic control of locomotion.
视觉作为感觉之女王,在引导运动方面起着至关重要的作用。关于视觉对步态协调性的变异性影响,我们知之甚少。无控状态流形(UCM)方法为研究运动变异性的结构提供了一个窗口,而传统的相关分析很难获得这种结构。在这项研究中,我们使用 UCM 分析来量化在不同视觉条件下行走时,下肢运动如何协调以控制质心(COM)。我们还探究了协同作用强度如何沿着支撑相演变。十名健康参与者在跑步机上进行有和无视觉信息的行走实验。将腿部关节角度相对于整个身体 COM 的方差分为良好方差(即保持 COM 的方差)和不良方差(即改变 COM 的方差)。我们观察到,当视觉信息被消除后,两种方差在整个支撑相都增加,而协同作用的强度(两个方差之间的归一化差异)显著降低,甚至在足跟接触时降低到零。因此,在限制视觉的情况下行走会改变控制 COM 在行进平面上的运动协同作用的强度。我们还发现,在两种视觉条件下,这种协同作用的强度在不同的行走阶段和步态事件中都有所不同。我们得出结论,UCM 分析可以量化当视觉被阻断时 COM 协调的变化,并深入了解视觉在协同控制运动中的作用。