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Foot orthotics affect lower extremity kinematics and kinetics during running.

机译:足部矫形器会影响跑步过程中的下肢运动学和动力学。

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Objective. To quantify the effects of posting and custom-molding of foot orthotics on lower extremity kinematics and kinetics during running.Design. Repeated measures.Background. Several kinematic and kinetic factors have been suggested to increase a runner's risk for injuries. It has been speculated that foot orthotics can be used to reduce injury related complaints or even prevent running injuries by affecting these factors.Methods. Twenty one volunteers participated in this study. Kinematic and kinetic variables obtained during overground running for medial posting, custom-molding, and the combination of medial posting and custom-molding of foot orthotics were compared to a control condition. Repeated measures ANOVA and student t-tests were used to detect significant differences (alpha=0.05).Results. Posting of foot orthotics reduced maximum foot eversion and ankle inversion moment and increased vertical loading rate and maximum knee external rotation moment (P<0.05). Molding and posting and moldingreduced vertical loading rate and ankle inversion moment and increased maximum foot inversion and maximum knee external rotation moment (P<0.05).Conclusions. The effects of posting and molding of foot orthotics are extremely different and when combining posting and molding, the effects of molding appear to be dominant. It yet remains to be determined whether posting or molding is more beneficial with respect to overuse running injuries.Relevance The potential of foot orthotics for reducing pain and injuries is convincing. The current study provides valuable information about the role of specific structural components of foot orthotics and contributes to the knowledge about the mechanism underlying the effect of foot orthotics in running.
机译:目的。为了量化脚部矫正器的张贴和定制模制对跑步过程中下肢运动学和动力学的影响。重复的措施。已经提出了几种运动学和动力学因素来增加跑步者受伤的风险。据推测,足部矫形器可用于减少与伤害有关的投诉,甚至可以通过影响这些因素来预防跑步伤害。 21名志愿者参加了这项研究。将在地面跑步过程中获得的运动学和动力学变量与内侧矫正,定制成型以及内侧矫正和足部矫形器的定制成型相结合,与控制条件进行了比较。重复测量采用方差分析(ANOVA)和学生t检验,以检测出显着性差异(alpha = 0.05)。足部矫形器的张贴减少了最大脚外翻和踝关节倒立力矩,并增加了垂直负荷率和最大膝盖外转力矩(P <0.05)。成型,成型和成型降低了垂直负荷率和踝关节倒立力矩,增加了最大脚倒立和最大膝盖外转力矩(P <0.05)。足部矫正器的贴合和成型效果极为不同,将贴合和成型结合使用时,成型效果似乎占主导地位。对于过度使用的跑步损伤,张贴或模制是否更有利尚待确定。相关性足部矫形器减轻疼痛和受伤的潜力令人信服。当前的研究提供了有关脚部矫正器特定结构部件的作用的有价值的信息,并且有助于了解有关脚部矫正器在跑步中的作用机理的知识。

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