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Gait-training devices in the treatment of lower extremity injuries in sports medicine: current status and future prospects

机译:运动医学中下肢损伤的步态训练装置:现状和未来前景

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Introduction: This review seeks to provide synthesized information on gait-training techniques and devices applied, in four of the most prevalent chronic lower extremity injuries seen in sports medicine.Areas covered: Comprehensive searches were performed in CINAHL and PubMed databases in April 2018 to identify gait-training articles in Chronic Ankle Instability (CAI), Exercise-Related Lower Leg Pain (ERLLP), Patellofemoral Pain (PFP), and Anterior Cruciate Ligament with Reconstruction (ACLR) populations. An investigator reviewed the articles and extracted data including study demographics, gait-training techniques, devices used, and primary gait-training outcomes. Fifty-eight articles were included in this review (9 CAI, 19 ERLLP, 17 PFP, 13 ACLR). Pooled analyses were performed for common outcomes within each injury category. Current evidence supports destabilization training and pressure medialization tactics for CAI (n=9), footstrike/loading and cadence interventions for ERLLP (n=11) and PFP (n=7), and limb off-loading techniques for ACLR (n=4). Commonly used devices included accelerometers (n=6), custom gait-training footwear (n=9), metronomes (n=14), and pressure sensors (n=5).Expert commentary: Although there are commonalities among gait-training interventions for chronic pathologies, more uniform approaches and clinical predictor rules would help identify the most appropriate interventions. Wearable sensors will continue to revolutionize gait-training and allow for ecologically valid gait-training interventions.
机译:介绍:本综述旨在提供有关应用的步态训练技术和设备的合成信息,在运动医学中的四种最普遍的慢性下肢损伤中。覆盖:在2018年4月在Cinahl和PubMed数据库中进行了综合搜索以确定步态培训在慢性踝关节不稳定(CAI),与运动相关的小腿疼痛(ERLLP),Patelloforal疼痛(PFP)和重建(ACLR)种群的前十字架韧带。调查员审查了文章和提取的数据,包括研究人口统计学,步态训练技术,所使用的设备和主要步态训练结果。本综述中包含五十八篇文章(9CAI,19个ERLLP,17 PFP,13 ACLR)。在每种伤害类别内进行汇总分析。目前的证据支持CAI(n = 9),足鸟类/装载和节奏干预的稳定训练和压力介质策略,用于ERLLP(n = 11)和PFP(n = 7),以及用于ACLR的肢体非加载技术(n = 4 )。常用的设备包括加速度计(n = 6),定制步态训练鞋(n = 9),元组音(n = 14)和压力传感器(n = 5).pert评论:尽管步态训练干预措施中存在共性对于慢性病理学,更统一的方法和临床预测规则将有助于确定最合适的干预措施。可穿戴传感器将继续彻底改变步态培训,并允许生态有效的步态培训干预措施。

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