Verschueren Jo, Tassignon Bruno, Pluym Bert, Van Cutsem Jeroen, Verhagen Evert, Meeusen Romain
1Faculty of Physical Education and Physiotherapy, Human Physiology Research Group, Vrije Universiteit Brussel, Brussels, Belgium.
2Amsterdam Collaboration on Health and Safety in Sports, Department of Public and Occupational Health, Amsterdam Movement Sciences, Amsterdam UMC, Vrije Universiteit Amsterdam, Van der Boechorststraat 7, NL-1081 BT Amsterdam, The Netherlands.
Arch Physiother. 2019 Apr 16;9:6. doi: 10.1186/s40945-019-0057-4. eCollection 2019.
Balance tests are commonly used in clinical practice with applicability in injury prevention and return to sport decisions. While most sports injuries occur in a changing environment where reacting to a non-planned stimulus is of great importance, these balance tests only evaluate pre-planned movements without taking these dynamics environmental aspects into account. Therefore, the goal of this paper was to develop a clinician-friendly test that respects these contextual interactions and to describe the test protocol of an adapted Y-balance test that includes environmental perception and decision-making.
Within the theoretical construct of balance and adaptability, balance errors were selected as outcome measures for balance ability and, visuomotor reaction time and accuracy are selected as outcome measures for adaptability. A reactive balance task was developed and described using the Y-balance test for the balance component, while the FitLight training system was chosen for the environmental perception and decision-making component of the test.
This paper describes the test protocol of a reactive balance test as an adapted Y-balance test. The LED-lights of the FitLight training systemTM are placed at 80% of the maximal reach distance for each axis along the Y-Balance test kitTM. To induce cognitive load within the visuomotor task, colours were fixed to a corresponding axis, and both the order of the visual stimuli as the interstimulus time were randomised to integrate environmental perception and decision-making.
The reactive balance test is a functional test that allows clinicians to score balance ability and athlete adaptability easily.
平衡测试在临床实践中常用,适用于预防损伤和决定能否重返运动。虽然大多数运动损伤发生在变化的环境中,对非计划刺激做出反应非常重要,但这些平衡测试仅评估预先计划的动作,未考虑这些动态环境因素。因此,本文的目标是开发一种方便临床医生使用的测试,该测试考虑到这些情境交互作用,并描述一种经过改编的Y平衡测试的测试方案,该方案包括环境感知和决策。
在平衡和适应性的理论框架内,选择平衡误差作为平衡能力的结果指标,选择视觉运动反应时间和准确性作为适应性的结果指标。开发并描述了一种反应性平衡任务,平衡部分使用Y平衡测试,而测试的环境感知和决策部分选择了FitLight训练系统。
本文描述了一种反应性平衡测试的测试方案,即一种经过改编的Y平衡测试。FitLight训练系统TM的LED灯沿着Y平衡测试套件TM放置在每个轴最大伸展距离的80%处。为了在视觉运动任务中引入认知负荷,将颜色固定到相应的轴上,视觉刺激的顺序和刺激间隔时间均随机化,以整合环境感知和决策。
反应性平衡测试是一种功能性测试,可以让临床医生轻松评估平衡能力和运动员的适应性。