Wydział Kultury Fizycznej, Gdańsk Akademia Wychowania Fizycznego i Sportu,, Gdańsk, Polska / Department of Physical Culture, Gdańsk University of Physical Education and Sport, Gdańsk, Poland.
Katedra Fizjoterapii, Collegium Medicum, Uniwersytet Warmińsko-Mazurski, Olsztyn, Polska / Department of Physiotherapy, School of Health Sciences, University of Warmia and Mazury, Olsztyn, Poland, 3 Centrum Postawy Ciała, Olsztyn, Polska / Center of Body Posture, Olsztyn, Poland.
Ortop Traumatol Rehabil. 2024 Apr 30;26(2):21-30. doi: 10.5604/01.3001.0054.6546.
Whole-body vibration is commonly used in physiotherapy. The vibration platform generates mechanical stimuli that primarily influence the neuromuscular system. Vibration can improve proprioception and balance. The aim of the study was to assess the impact of whole-body vibration on foot position and postural stability.
A group of 31 participants took part in 6 vibration sessions at 15Hz and 30Hz over 2 weeks. Foot position parameters (angle and distance) and postural stability indicators before and after vibration were assessed on the Biodex Balance System. Vibration was performed on the Galileo Med35 platform (3x3 min). A control group consisted of 26 people who were only assessed on the Biodex platform.
There was no change in the angle of both feet (p>0.05) after vibration at the frequency of 15 Hz. The angle of the right foot increased (p=0.013) after vibration at 30 Hz. Vibration increased the distance between the feet for both 15Hz (p=0.000) and 30Hz (p=0.000) sessions. There was no correlation between the change in feet spacing and the change in the overall stability index, anteroposterior stability index and mediolateral stability index (p>0.05). In the control group, no changes (p>0.05) in the angle and foot spacing were noted between consecutive measurements.
全身振动在物理治疗中很常见。振动平台产生的机械刺激主要影响神经系统。振动可以改善本体感受和平衡。本研究旨在评估全身振动对足部位置和姿势稳定性的影响。
一组 31 名参与者参加了为期 2 周的 6 次振动治疗,频率为 15Hz 和 30Hz。在 Biodex 平衡系统上评估振动前后的足部位置参数(角度和距离)和姿势稳定性指标。振动在 Galileo Med35 平台(3x3 分钟)上进行。对照组由 26 名仅在 Biodex 平台上进行评估的人员组成。
15Hz 振动后双脚角度无变化(p>0.05)。30Hz 振动后右脚角度增加(p=0.013)。振动增加了双脚之间的距离,15Hz(p=0.000)和 30Hz(p=0.000)振动后均如此。双脚间距的变化与整体稳定性指数、前后稳定性指数和左右稳定性指数的变化之间没有相关性(p>0.05)。在对照组中,连续测量之间未观察到角度和脚间距的变化(p>0.05)。
1.全身振动可以增加静态条件下四边形支撑的宽度,但对改变足部角度的影响很小。2.全身振动后四边形支撑的宽度似乎不会影响静态条件下的姿势稳定性。3.建议在全身振动前后评估姿势稳定性,同时保持足部的初始位置。