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Gait adaptation of children with cerebral palsy compared with control children when stepping over an obstacle.

机译:与正常儿童相比,脑瘫儿童在越过障碍物时的步态适应性。

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This study investigated the adaptive gait pattern in obstacle clearance in 12 normally developing (ND) children (six males, six females; mean age 10y 2mo, SD 10mo) and 12 children who had spastic diplegic cerebral palsy (CP) and who were independent ambulators (10 males, two females; mean age 13y 5mo, SD 2y 7mo). Children in both groups had 8 to 12 years of walking experience. They walked up to and crossed over obstacles of a height of 0%, 10%, and 20% of their leg length. Kinematic aspects of the three-dimensional leg movements were captured with the Vicon system and analyzed with one-way analysis of variance with repeated measure. Both groups increased foot clearance for higher obstacles. Children with CP were slower in approach and crossing speed, and used a wider base of support than the ND children when the obstacle height was increased. Results suggest that motor problems in obstacle clearance in children with CP lie in the implicit process of motor control, i.e. torque dynamics, not the explicitprocess, i.e. movement-match with the environmental constraints.
机译:这项研究调查了12名正常发育(ND)儿童(六名男性,六名女性;平均年龄10y 2mo,SD 10mo)和12名患有痉挛性双腿瘫痪(CP)且为独立步行者的儿童的障碍物清除适应性步态模式。 (男性10位,女性2位;平均年龄13y 5mo,SD 2y 7mo)。两组儿童都有8到12年的步行经验。他们走上并越过了腿长分别为0%,10%和20%的障碍物。使用Vicon系统捕获三维腿部运动的运动学方面,并通过单向方差分析和重复测量进行分析。两组均增加了较高障碍物的脚部间隙。当障碍物高度增加时,CP儿童比ND儿童更慢进场和穿越速度,并使用更广泛的支撑基础。结果表明,患有CP的儿童障碍物清除过程中的运动问题在于运动控制的隐式过程,即扭矩动力学,而不是显式过程,即与环境约束相匹配的运动过程。

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