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Measuring age-related differences in kinematic postural strategies under yaw perturbation

机译:测量偏航扰动下运动姿势策略的年龄相关差异

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The assessment of age-related postural strategies under external perturbation is of great interest for a better evaluation of the risk of falls in healthy humans. In the large majority of the studies, subjects have been perturbed with antero/posterior translations or rotations in the pitch and roll angles in order to investigate the postural strategies adopted for balance control. However, physiological mechanisms involved in the response to continuous yaw perturbation to maintain stable balance in healthy subjects are still unclear. Ten younger subjects (age: 28±3 years) and ten older adults (age: 61±4 years) were asked to stand on the RotoBiT~(1D) under two visual conditions: (a) eyes opened looking at a fixation point, and (b) eyes closed. The platform, driven by an ad-hoc control software, provided two sinusoidal rotations on the horizontal plane with fixed amplitude (±55°) and two different frequencies (0.2 Hz and 0.3 Hz). Kinematics of head, trunk, pelvis, arms, forearms, thighs and shanks body-segments was gathered using eleven inertial measurement units. Body-segment absolute rotations in the transverse plane were compared to platform absolute rotation after fast Fourier transform. The gain (G) and phase lag (Φ) of all body-segments were computed and analyzed as a function of age, visual and frequency conditions. G values were statistically lower in older subjects than in younger subjects for all body-segments attesting prominent stiffness and limited ranges of movement. Regarding Φ, our results demonstrated that in older subjects, lower limbs, trunk and pelvis anticipated platform movement probably compensating for postural perturbations. In both groups, G decreased and Φ delayed progressively by increasing the frequency of the perturbation while similar results were obtained comparing the two visual conditions. In conclusion, to maintain balance under sinusoidal yaw perturbation, older subjects adopted a different motor control strategy compared wit
机译:对外部扰动下的年龄相关型历史策略的评估对于更好地评估健康人类陷入困境的风险有益。在大多数研究中,受试者已经扰乱了间距和滚动角度的翼形/后部翻译或旋转,以研究用于平衡控制的姿势策略。然而,参与持续偏航扰动的应对以保持健康受试者保持稳定平衡的生理机制仍然不清楚。 10个幼眼(年龄:28±3岁)和十名老年人(年龄:61±4年)被要求在两个视觉条件下站在轮斗〜(1d)上:(a)眼睛看着一个固定点, (b)闭着眼睛。由Ad-Hoc控制软件驱动的平台,在水平面上提供了两个正弦旋转,固定幅度(±55°)和两种不同的频率(0.2Hz和0.3 Hz)。使用11个惯性测量单位收集头部,躯干,骨盆,武器,前臂,大腿和柄臂身体段的运动学。在快速傅立叶变换之后将横向平面中的体段绝对旋转与平台绝对旋转进行比较。根据年龄,视觉和频率条件,计算和分析所有体段的增益(G)和相滞(φ)。 G值在历史上的统计学上比以突出刚度和有限的运动范围的所有身体分段为更年轻的科目。关于φ,我们的结果表明,在较旧的受试者中,下肢,躯干和骨盆预期平台运动可能会弥补姿势扰动。在两个组中,通过增加扰动的频率而在比较两个视觉条件的同时,G逐渐逐渐延迟。总之,为了维持正弦偏航扰动下的平衡,旧的受试者采用了不同的电机控制策略比较机智

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