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首页> 外文期刊>Gait & posture >Body size and walking cadence affect lower extremity joint power in children's gait.
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Body size and walking cadence affect lower extremity joint power in children's gait.

机译:身体大小和步行节奏会影响儿童步态的下肢关节力量。

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摘要

Obese children move less and with greater difficulty than normal-weight counterparts but expend comparable energy. Increased metabolic costs have been attributed to poor biomechanics but few studies have investigated the influence of obesity on mechanical demands of gait. This study sought to assess three-dimensional lower extremity joint powers in two walking cadences in 28 obese and normal-weight children. 3D-motion analysis was conducted for five trials of barefoot walking at self-selected and 30% greater than self-selected cadences. Mechanical power was calculated at the hip, knee, and ankle in sagittal, frontal and transverse planes. Significant group differences were seen for all power phases in the sagittal plane, hip and knee power at weight acceptance and hip power at propulsion in the frontal plane, and knee power during mid-stance in the transverse plane. After adjusting for body weight, group differences existed in hip and knee power phases at weight acceptance in sagittal and frontal planes, respectively. Differences in cadence existed for all hip joint powers in the sagittal plane and frontal plane hip power at propulsion. Frontal plane knee power at weight acceptance and sagittal plane knee power at propulsion were significantly different between cadences. Larger joint powers in obese children contribute to difficulty performing locomotor tasks, potentially decreasing motivation to exercise.
机译:肥胖的儿童比同等体重的儿童移动少,困难更大,但消耗的精力却相当。代谢成本增加归因于不良的生物力学,但很少有研究调查肥胖对步态机械需求的影响。本研究旨在评估28名肥胖和体重正常儿童的两个步行节奏中的三维下肢关节​​力量。进行了5次自选步伐的赤脚行走试验的3D运动分析,该试验比自选步调高30%。在矢状,额状和横断面的臀部,膝盖和脚踝处计算机械力。在矢状面的所有力量阶段,在承重时的髋部和膝部力量,在额平面的推进时的髋部力量以及在横向姿势的中间姿势期间的膝部力量均出现了显着的组别差异。调整体重后,在矢状面和额面接受重量时,髋部和膝部力量阶段分别存在群体差异。推进时矢状面和额面髋部力量的所有髋关节力量的节奏都存在差异。踏频时,承重时的额面膝关节力量和推进时的矢状面膝关节力量显着不同。肥胖儿童中较大的关节力量会导致难以完成运动任务,从而可能降低运动动机。

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