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慢性踝关节不稳患者在执行功能性任务时对外源性生物反馈的生物力学反应。

Biomechanical Response to External Biofeedback During Functional Tasks in Individuals With Chronic Ankle Instability.

机构信息

Department of Kinesiology, University of North Carolina at Charlotte.

出版信息

J Athl Train. 2021 Mar 1;56(3):263-271. doi: 10.4085/197-20.

Abstract

CONTEXT

Altered biomechanics displayed by individuals with chronic ankle instability (CAI) is a possible cause of recurring injuries and posttraumatic osteoarthritis. Current interventions are unable to modify aberrant biomechanics, leading to research efforts to determine if real-time external biofeedback can result in changes.

OBJECTIVE

To determine the real-time effects of visual and auditory biofeedback on functional-task biomechanics in individuals with CAI.

DESIGN

Crossover study.

SETTING

Laboratory.

PATIENTS OR OTHER PARTICIPANTS

Nineteen physically active adults with CAI (7 men, 12 women; age = 23.95 ± 5.52 years, height = 168.87 ± 6.94 cm, mass = 74.74 ± 15.41 kg).

INTERVENTION(S): Participants randomly performed single-limb static balance, step downs, lateral hops, and forward lunges during a baseline and 2 biofeedback conditions. Visual biofeedback was given through a crossline laser secured to the dorsum of the foot. Auditory biofeedback was given through a pressure sensor placed under the lateral foot and connected to a buzzer that elicited a noise when pressure exceeded the set threshold. Cues provided during the biofeedback conditions were used to promote proper biomechanics during each task.

MAIN OUTCOME MEASURE(S): We measured the location of center-of-pressure (COP) data points during balance with eyes open and eyes closed for each condition. Plantar pressure in the lateral column of the foot during functional tasks was extracted. Secondary outcomes of interest were COP area and velocity, time to boundary during static balance, and additional plantar-pressure measures.

RESULTS

Both biofeedback conditions reduced COP in the anterolateral quadrant while increasing COP in the posteromedial quadrant of the foot during eyes-open balance. Visual biofeedback increased lateral heel pressure and the lateral heel and midfoot pressure-time integral during hops. The auditory condition produced similar changes during the eyes-closed trials. Auditory biofeedback increased heel pressure during step downs and decreased the lateral forefoot pressure-time integral during lunges.

CONCLUSIONS

Real-time improvements in balance strategies were observed during both external biofeedback conditions. Visual and auditory biofeedback appeared to effectively moderate different functional-task biomechanics.

摘要

背景

慢性踝关节不稳(CAI)患者表现出的生物力学改变可能是导致反复受伤和创伤后骨关节炎的原因。目前的干预措施无法改变异常的生物力学,因此研究人员正在努力确定实时外部生物反馈是否会导致改变。

目的

确定视觉和听觉生物反馈对 CAI 患者功能任务生物力学的实时影响。

设计

交叉研究。

设置

实验室。

患者或其他参与者

19 名活跃的 CAI 成年人(7 名男性,12 名女性;年龄=23.95±5.52 岁,身高=168.87±6.94cm,体重=74.74±15.41kg)。

干预

参与者在基线和 2 种生物反馈条件下随机进行单腿静态平衡、台阶下降、侧向跳跃和向前弓步。视觉生物反馈通过固定在脚背部的十字线激光提供。听觉生物反馈通过放置在脚外侧的压力传感器提供,当压力超过设定阈值时,连接到蜂鸣器会发出噪音。在生物反馈条件下提供的提示用于在每个任务中促进适当的生物力学。

主要观察指标

我们测量了每种条件下睁眼和闭眼时足底压力中心(COP)数据点的位置。在功能任务中,提取了足外侧柱的足底压力。次要观察指标为 COP 面积和速度、静态平衡时到达边界的时间以及其他足底压力测量值。

结果

在睁眼平衡时,两种生物反馈条件都减少了前外侧象限的 COP,同时增加了后内侧象限的 COP。视觉生物反馈增加了跳跃时的外侧足跟压力和足跟及中足压力时间积分。在闭眼试验中,听觉条件产生了类似的变化。听觉生物反馈在台阶下降时增加了足跟压力,在弓步时减少了外侧前足压力时间积分。

结论

在两种外部生物反馈条件下,平衡策略都得到了实时改善。视觉和听觉生物反馈似乎有效地调节了不同的功能任务生物力学。

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An Updated Model of Chronic Ankle Instability.慢性踝关节不稳的更新模型。
J Athl Train. 2019 Jun;54(6):572-588. doi: 10.4085/1062-6050-344-18. Epub 2019 Jun 4.
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Epidemiology of Ankle Sprains and Chronic Ankle Instability.踝关节扭伤和慢性踝关节不稳定的流行病学。
J Athl Train. 2019 Jun;54(6):603-610. doi: 10.4085/1062-6050-447-17. Epub 2019 May 28.

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