首页> 外文期刊>Clinical biomechanics >Stepping with an ankle foot orthosis re-examined: a mechanical perspective for clinical decision making.
【24h】

Stepping with an ankle foot orthosis re-examined: a mechanical perspective for clinical decision making.

机译:重新检查脚踝足矫形器的脚步:临床决策的机械视角。

获取原文
获取原文并翻译 | 示例
           

摘要

BACKGROUND: Ankle foot orthoses are used to stabilize the ankle joint and aid toe clearance during stepping in persons after incomplete spinal cord injury. However, little is known about kinematics and kinetics of stepping with an orthosis during the transition from stance-to-swing and swing-to-stance. We intended to examine if an ankle foot orthosis impeded or facilitated optimal ankle, knee and hip joint kinematics, kinetics and spatiotemporal parameters during the transition phases of normal walking. METHODS: Fourteen healthy participants walked on a split-belt instrumented treadmill with and without a posterior leaf spring ankle foot orthosis at 1.2m/s. Three dimensional motion data and ground reaction forces were captured during 30-second trials of steady state walking. FINDINGS: During stance-to-swing, the orthosis significantly decreased hip extension [8.6 (5.5) to 6.7 (5.5) degrees, P=0.001], ankle plantarflexion [19.4 (5.7) to 12.0 (5.2) degrees, P<0.001] and plantarflexor power [0.18 (0.03) to 0.15 (0.03) watts/body weight, P<0.001]. During swing-to-stance, the orthosis significantly increased hip flexion [32.7 (4.7) to 35.6 (5.1) degrees, P=0.028] and ankle plantarflexion [8.4 (3.5) to 10.9 (4.7) degrees, P<0.001] and decreased loading rate [0.06 (0.01) to 0.05 (0.01) N/kg, P=0.018] and braking force [0.16 (0.02) to 0.15 (0.02) N/kg, P=0.013]. Double limb support time increased significantly with the orthosis [0.19 (0.02) to 0.22 (0.03) seconds, P<0.000]. INTERPRETATION: An ankle foot orthosis affected joint kinematics and kinetics during the transition from stance-to-swing and vice-versa. The use of orthosis to improve transition phase kinematics and kinetics in individuals with incomplete spinal cord injury warrants assessment.
机译:背景:踝足矫形器用于在不完全脊髓损伤后的踩踏过程中稳定踝关节并帮助脚趾清除。但是,对于从姿势到摆动和姿势到摆动的过渡过程中使用矫形器踩踏的运动学和动力学知之甚少。我们打算检查在正常行走的过渡阶段,踝足矫形器是否妨碍或促进了最佳的踝,膝和髋关节运动学,动力学和时空参数。方法:14名健康参与者在有和没有后板簧脚踝矫形器的情况下,在带式皮带的跑步机上行走,速度为1.2m / s。在稳定状态行走的30秒试验中,捕获了三维运动数据和地面反作用力。结果:在摆姿势期间,矫形器显着降低了髋部伸展度[8.6(5.5)至6.7(5.5)度,P = 0.001],踝plant屈[19.4(5.7)至12.0(5.2)度,P <0.001]足屈肌功率[0.18(0.03)到0.15(0.03)瓦/体重,P <0.001]。在摆姿势期间,矫形器可显着增加髋部屈曲[32.7(4.7)至35.6(5.1)度,P = 0.028]和踝plant屈[8.4(3.5)至10.9(4.7)度,P <0.001]并降低负载率[0.06(0.01)至0.05(0.01)N / kg,P = 0.018]和制动力[0.16(0.02)至0.15(0.02)N / kg,P = 0.013]。矫形器的双肢支撑时间显着增加[0.19(0.02)秒至0.22(0.03)秒,P <0.000]。解释:踝足矫形器在从站姿到摆动,反之亦然的过程中影响了关节的运动学和动力学。使用矫形器改善脊髓不完全损伤个体的过渡相运动学和动力学值得评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号