Augmented Feedback Response Prediction by Peak Vertical Ground Reaction Force in Adolescent Female Athletes.

IF 1.6 Q3 SPORT SCIENCES International Journal of Sports Physical Therapy Pub Date : 2025-01-02 eCollection Date: 2025-01-01 DOI:10.26603/001c.127139
Hannah Jaime, Drew Rutherford, Becky Heinert, C Nate Vannatta, Sherwin Toribio, Thomas W Kernozek
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Abstract

Background and purpose: Anterior cruciate ligament (ACL) tears often occur due to non-contact mechanisms in landing within females. Impact loading and aberrant landings may be addressed with augmented feedback training. The purpose of this study was to identify which female athletes most readily respond to a single session of augmented feedback to attenuate vGRF, by considering baseline peak vGFR and change in vGRF during training.

Design: Repeated Measures.

Methods: One hundred, forty-seven female athletes landed from 50 cm onto two force platforms with and without augmented feedback of vertical ground reaction force (vGRF), vGRF symmetry, and lower extremity position. Each performed six baseline trials and two sets of six training trials with cues. Following training, athletes completed six post-feedback trials (with no feedback) and six dual-task (transfer) trials where they randomly caught a basketball during landing. Peak vGRF was measured. Mean responses were reported for the sets of six trials. Participants were grouped based on their responses to training. Linear regression was used to indicate how well initial performance and response predicted the final response.

Results: Four groups were identified, with 107 participants showing high baseline ground reaction forces and response to training. Only 23 participants (16.4%) did not respond to training. Baseline vGRF predicted post-feedback vGRF and transfer task vGRF (R2=0.508 and R2=0.400) across all participants. When change in vGRF was assessed following two blocks of augmented feedback training, prediction of responders improved with post-feedback vGRF and transfer vGRF (R2=0.911 and R2=0.761).

Conclusions: The combination of both baseline ground reaction force and response to initial training is more accurate than baseline measures alone in identifying those who respond to training. Assessing initial response to training may be necessary to more accurately identify individuals most likely to benefit from augmented feedback training and who may require further evaluation and training.

Level of evidence: 2b.

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青少年女运动员最大垂直地面反作用力的增强反馈反应预测。
背景和目的:前交叉韧带(ACL)撕裂通常是由于女性在着陆时的非接触机制造成的。冲击载荷和异常着陆可以通过增强反馈训练来解决。本研究的目的是通过考虑基线峰值vGFR和训练期间vGRF的变化,确定哪些女运动员最容易对单次增强反馈做出反应,以减弱vGRF。设计:重复测量。方法:147名女运动员在有和没有增强反馈的垂直地面反作用力(vGRF)、vGRF对称性和下肢位置的情况下,从50 cm高处落在两个力平台上。每个人都进行了六次基线试验和两组六次训练试验。训练结束后,运动员完成了六项后反馈试验(没有反馈)和六项双任务(转移)试验,他们在着陆时随机接住一个篮球。测量vGRF峰值。报告了6组试验的平均反应。参与者根据他们对培训的反应进行分组。使用线性回归来表明初始表现和反应对最终反应的预测程度。结果:确定了四组,其中107名参与者表现出高基线地面反应力和对训练的反应。只有23名参与者(16.4%)对培训没有反应。基线vGRF预测所有参与者反馈后vGRF和迁移任务vGRF (R2=0.508和R2=0.400)。在两组增强反馈训练后评估vGRF的变化时,反馈后vGRF和转移vGRF改善了应答者的预测(R2=0.911和R2=0.761)。结论:结合基线地面反作用力和对初始训练的反应,在识别对训练有反应的患者方面比单独使用基线测量更准确。评估对培训的初步反应可能是必要的,以便更准确地确定最有可能从增强反馈培训中受益的个人,以及可能需要进一步评估和培训的个人。证据等级:2b。
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CiteScore
2.50
自引率
5.90%
发文量
124
审稿时长
16 weeks
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