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增强反馈可降低跳跃着陆力。

Augmented feedback reduces jump landing forces.

作者信息

Onate J A, Guskiewicz K M, Sullivan R J

机构信息

Department of Exercise and Sport Science, Human Movement Science Program, University of North Carolina at Chapel Hill, 27599-8700, USA.

出版信息

J Orthop Sports Phys Ther. 2001 Sep;31(9):511-7. doi: 10.2519/jospt.2001.31.9.511.

Abstract

STUDY DESIGN

Randomized, experimental design using a 1-way ANCOVA to determine the influence of various forms of feedback on jump landing forces.

OBJECTIVE

To investigate the effects of augmented feedback versus sensory feedback on the reduction of jump landing forces.

BACKGROUND

Several investigators have reported an increased risk of lower extremity injury associated with landing from a jump.

METHODS AND MEASURES

Nonimpaired college students (N=63) were randomly assigned to 1 of 4 feedback groups. Subjects were instructed to perform maximal vertical jumps onto a force plate for 3 testing sessions (baseline, 2-minute post-test, and 1-week post-test). Three feedback groups (augmented, sensory, and control I) were tested during all 3 testing sessions, while a fourth feedback group (control II) was evaluated at only 2 sessions (baseline and 1-week post-test). Subjects in the augmented feedback condition were provided information via video and verbal analysis of how to land softer. Subjects in the sensory feedback condition were asked to use the experience of their baseline jumps to document how they could land softer. Subjects in each of the control groups were not provided any extraneous feedback. Peak vertical ground reaction force data were collected for analysis.

RESULTS

The subjects in the augmented feedback group significantly reduced their peak vertical ground reaction force in both post-test conditions (2-minute post-test reduction, 0.85+/-0.62; 1-week post-test reduction, 0.74+/-0.58) as compared to the sensory, control I, and control II feedback groups.

CONCLUSIONS

High impact landing forces may be reduced by the implementation of augmented feedback information instructing individuals about how to land properly. The reduction of jump landing forces with the use of augmented feedback may prove beneficial in the creation of instructional landing programs.

摘要

研究设计

采用单因素协方差分析的随机实验设计,以确定各种形式的反馈对跳跃着陆力的影响。

目的

研究增强反馈与感觉反馈对降低跳跃着陆力的效果。

背景

几位研究者报告称,从跳跃中着陆会增加下肢受伤的风险。

方法与测量

将未受伤的大学生(N = 63)随机分配到4个反馈组中的1组。受试者被指示在测力板上进行最大垂直跳跃,共进行3次测试(基线测试、测试后2分钟和测试后1周)。在所有3次测试中对3个反馈组(增强反馈组、感觉反馈组和对照组I)进行测试,而第4个反馈组(对照组II)仅在2次测试(基线测试和测试后1周)时进行评估。增强反馈组的受试者通过视频和口头分析获得如何更轻柔着陆的信息。感觉反馈组的受试者被要求利用其基线跳跃的体验来记录如何更轻柔着陆。每个对照组的受试者未得到任何额外反馈。收集峰值垂直地面反作用力数据进行分析。

结果

与感觉反馈组、对照组I和对照组II相比,增强反馈组的受试者在两个测试后条件下(测试后2分钟减少量为0.85±0.62;测试后1周减少量为0.74±0.58)均显著降低了其峰值垂直地面反作用力。

结论

通过实施增强反馈信息指导个体正确着陆,可以降低高冲击力的着陆力。使用增强反馈降低跳跃着陆力可能在创建指导性着陆计划方面被证明是有益的。

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