Di Fabio R P, Emasithi A, Paul S
Department of Physical Medicine and Rehabilitation, University of Minnesota, Minneapolis 55455, USA.
Acta Otolaryngol. 1998 Jul;118(4):449-54. doi: 10.1080/00016489850154540.
Temporal and spatial relationships between head motion and tilt of a visual surround were evaluated in conditions 3 and 6 of the sensory organization test (SOT) to determine the validity of visual stabilization during computerized dynamic platform posturography (CDP). Seven healthy subjects participated (mean age 42.4 years, SD = 19 years, range 25-72 years). Sagittal head translation and head pitch were evaluated separately with respect to displacement of the visual surround. Overall, the mean correlation between sagittal head motion and surround tilt was r = 0.68 for C3 and r = 0.93 for C6. The average phase (aggregate findings supported with trial-by-trial analysis), however, showed that sagittal head displacement leads motion of the visual surround ( + 452 ms for C3 and + 250 ms for C6). The mean correlation between head pitch and surround tilt was r = -0.30 for C3 and r = -0.72 for C6. Head pitch also leads visual surround motion (+567 ms for C3 and +539 ms for C6), but with greater variability than sagittal head translation. The results showed that visual stabilization was not consistently achieved during SOT conditions 3 and 6. The fundamental assumption that posture behaves as an inverted pendulum, with control of equilibrium originating in the lower extremities, does not appear to be applicable to the voluntary corrections of sway required during the SOT.
在感觉组织测试(SOT)的条件3和条件6下,评估了头部运动与视觉环境倾斜之间的时空关系,以确定在计算机化动态平台姿势描记法(CDP)期间视觉稳定的有效性。七名健康受试者参与了研究(平均年龄42.4岁,标准差=19岁,范围25 - 72岁)。分别针对视觉环境的位移评估了矢状面头部平移和头部俯仰。总体而言,矢状面头部运动与环境倾斜之间的平均相关性在C3条件下为r = 0.68,在C6条件下为r = 0.93。然而,平均相位(通过逐次试验分析支持的总体结果)表明,矢状面头部位移领先于视觉环境的运动(C3条件下为+452毫秒,C6条件下为+250毫秒)。头部俯仰与环境倾斜之间的平均相关性在C3条件下为r = -0.30,在C6条件下为r = -0.72。头部俯仰也领先于视觉环境的运动(C3条件下为+567毫秒,C6条件下为+539毫秒),但比矢状面头部平移具有更大的变异性。结果表明,在SOT条件3和条件6期间,视觉稳定并未始终如一地实现。姿势表现为倒立摆,平衡控制源于下肢的基本假设,似乎不适用于SOT期间所需的摇摆的自主校正。