Montull Lluc, Borrallo Alex, Almarcha Maricarmen, Balagué Natàlia
Complex Systems in Sport Research Group, National Institute of Physical Education of Catalonia (INEFC), University of Lleida, Lleida, Spain.
Complex Systems in Sport Research Group, National Institute of Physical Education of Catalonia (INEFC), University of Barcelona, Barcelona, Spain.
Front Physiol. 2023 Jan 20;14:1112902. doi: 10.3389/fphys.2023.1112902. eCollection 2023.
Proprioception is a crucial property for movement stability and balance, but its current assessment, based on clinical testing, lacks precision and adequacy in real contexts. This study proposes assessing proprioception and its sensitivity to training effects through acceleration time series recorded during two slackline experiments. In the first experiment, slackliners of different expertise (highly and poorly trained) had to walk on a slackline for 30 s. In the second, twelve beginners had to balance up on the slackline for at least 11 s before and after a training process. Acceleration time series were recorded in body components (legs and centre of mass) and the slackline. The acceleration fluctuations were analysed through Detrended Fluctuation Analysis. The obtained Hurst (H)-exponents were compared between both groups (first experiment) and before and after training (second experiment) using Whitney and Wilcoxon tests, respectively. The values of H-exponents were lower in the highly trained group (Z = -2.15, = 0.03) (first experiment), and in the post-training conditions (Z = -2.35, = 0.02) (second experiment). These results suggest better motor and proprioceptive control with training status. Hence, the time-variability structure of acceleration in real contexts, like slackline tasks, is proposed as an objective measure of proprioception and its training effects.
本体感觉是运动稳定性和平衡的关键属性,但其目前基于临床测试的评估在实际情况下缺乏精度和充分性。本研究建议通过在两个走扁带实验中记录的加速度时间序列来评估本体感觉及其对训练效果的敏感性。在第一个实验中,不同专业水平(训练有素和训练不足)的走扁带者必须在扁带上行走30秒。在第二个实验中,12名初学者在训练前后必须在扁带上保持平衡至少11秒。在身体部位(腿部和质心)以及扁带上记录加速度时间序列。通过去趋势波动分析来分析加速度波动。分别使用惠特尼检验和威尔科克森检验比较两组之间(第一个实验)以及训练前后(第二个实验)获得的赫斯特(H)指数。在训练有素的组中(Z = -2.15,P = 0.03)(第一个实验)以及训练后的情况下(Z = -2.35,P = 0.02)(第二个实验),H指数的值更低。这些结果表明训练状态会带来更好的运动和本体感觉控制。因此,在走扁带任务等实际情况下加速度的时间变异性结构被提议作为本体感觉及其训练效果的客观测量指标。