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The influence of the aquatic environment on the center of pressure, impulses and upper and lower trunk accelerations during gait initiation

机译:水生环境对步态启动期间压力,脉冲和上下躯干加速度的影响

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Highlights ? The aquatic medium increases center of pressure trajectory during gait initiation. ? Water offers resistance to the execution of the first step decreasing velocity. ? The anteroposterior impulse and mean force are increased while stepping forward in water. ? A new trunk strategy is evoked while walking in water compared to land. Abstract Gait initiation is defined as the transition from stationary standing to steady-state walking. Despite the frequent use of therapy pools for training walking in early stages of rehabilitation, none have been reported on the effects of immersion on gait initiation. We aimed to analyze the center of pressure (COP) trajectories, the vertical and anteroposterior impulses and upper and lower trunk accelerations during anticipatory (APA) and execution phases of gait initiation. In the COP trajectory, the execution (EXE) phase was further subdivided in two phases: predominantly mediolateral (EXE1), and predominantly anteroposterior (EXE2). Able-bodied participants initiated gait while standing on a force plate and walked approximately 4 steps following a visual cue. The participants were wearing three inertial sensors placed on the lower and upper trunk, and on the stance shank. Individuals performed 10 trials each on land and in water, in two consecutive days. The lengths and velocities of COP trajectories increased in water compared to land during APA, while the COP length increased and the COP velocity reduced in water during EXE2. The anteroposterior impulses increased in water during EXE. Lower trunk acceleration was smaller in water while the upper trunk acceleration did not differ, resulting in the larger ratio of upper to lower trunk acceleration in water during EXE. Overall, immersion in water increases COP length during gait initiation, and reduces COP velocity during EXE2, indicating a new postural strategy in water. The aquatic medium may be favorable for individuals who need weight support, gradual resistance and a longer time to execute gait initiation.
机译:强调 ?水生介质在步态启动期间增加了压力轨迹的中心。还水为第一步减小速度的执行提供抵抗力。还在水中踩下时,前后脉冲和平均力增加。还与陆地相比,在水中行走时诱发新的主干战略。摘要步态启动被定义为从固定站到稳态行走的过渡。尽管频繁使用治疗池进行康复的早期阶段的培训,但尚未报告浸入步态启动的影响。我们的旨在分析预期(APA)期间的压力(COP)轨迹,垂直和前后脉冲和上下躯干加速度和步态开始的执行阶段。在COP轨迹中,执行(EXE)相进一步细分:主要是Mediolateral(EXE1),主要是前后(EXE2)。能够身体的参与者在站立在力板上启动了步态,并在视觉提示后走过大约4个步骤。参与者佩戴在下部和上部躯干上的三个惯性传感器,以及姿态柄。在连续两天,个人在陆地和水中进行了10项试验。与APA的陆地相比,COP轨迹的长度和速度在水中增加,而COP长度增加,并且在EXE2期间的COP速度降低了水中。在exe期间,前后脉冲增加。在水中较低的树干加速度较小,同时上部行李箱加速度没有不同,导致exe期间水中的上部到下躯干加速度的较大比例较大。总的来说,在水中浸入水中增加了COP长度,并在EXE2期间减少了COP速度,表明水中的新姿势策略。水生介质可能有利于需要重量支持,逐渐阻力和更长的时间来执行步态启动的个体。

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