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Kinematics and postural muscular activity during continuous oscillating platform movement in children and adolescents

机译:儿童和青少年连续振荡平台运动期间的运动学和姿势肌肉活动

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摘要

The aims of this study were to (1) characterize anticipatory and reactive postural strategies in typically developing (TD) children and adolescents; (2) determine if TD youth shift from reactive to anticipatory mechanisms based on knowledge of platform movement; and (3) determine whether TD youth further modify postural strategies when additional information about the perturbation is provided. Sixteen typically developing youth aged 7-17 years stood with eyes open on a movable platform that progressively translated anteroposteriorly (20 cm peak-to-peak) through four speeds (0.1, 0.25, 0.5, and 0.61 Hz). Participants performed two trials each of experimenter-triggered and self-triggered perturbations. Postural muscle activity (1000 Hz) of the tibialis anterior, gastrocnemius, quadriceps and hamstrings and 3D whole body kinematics (100 Hz) were recorded. The Anchoring Index and marker-pair trajectory cross-correlations were calculated as indications of body stabilization. The number of steps taken to regain balance/avoid falling were counted. Transition states and steady states were analyzed separately. Generally, the higher frequencies resulted in more steps being taken, lower correlations coupled with greater temporal lags between marker trajectories, and postural muscle activity similar to older adults. The provision of self-triggered perturbations allowed participants to make the appropriate changes to their balance by use of anticipatory postural control mechanisms.
机译:本研究的目的是(1)在典型的发展(TD)儿童和青少年中的预期和反应性姿势策略的特征; (2)根据平台运动的知识确定TD青年是否从反应转移到预期机制; (3)确定TD青年是否进一步修改了扰动有关扰动的其他信息时的姿势策略。十六岁的人曾在7-17岁的发展中,眼睛在一个可移动平台上睁开眼睛,通过四个速度(0.1,0.25,0.5和0.61Hz)逐渐转化为前瓣(20cm峰值)。参与者进行了两项试验,每个试验触发和自我触发的扰动。记录了胫骨前,胃肠,QuadRiceps和腿风和3D全身运动学(100 Hz)的姿势肌肉活动(1000 Hz)。锚定指数和标记对轨迹互相关被计算为体稳定的指示。计算要恢复平衡/避免下降的步骤数量。分别分别分析过渡状态和稳定状态。通常,较高的频率导致正在进行的更多步骤,较低的相关性与标记轨迹之间的更大的时间滞后,以及类似于老年人的姿势肌肉活动。提供自我触发的扰动允许参与者通过使用预期的姿势控制机制对其平衡进行适当的变化。

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