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首页> 外文期刊>Human physiology >Assessment of Influence of Breath Holding and Hyperventilation on Human Postural Stability with Spectral Analysis of Stabilographic Signal
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Assessment of Influence of Breath Holding and Hyperventilation on Human Postural Stability with Spectral Analysis of Stabilographic Signal

机译:呼吸信号的频谱分析评估屏气和换气过度对人体姿势稳定性的影响

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The influence of breath holding and voluntary hyperventilation on the traditional stabilometric parameters and the frequency characteristics of stabilographic signal was studied. We measured the stabilometric parameters on a force platform ("Ritm", Russia) in the 107 healthy volunteers during quiet breath, voluntary hyperventilation (20 seconds) and maximal inspiratory breath holding (20 seconds). Respiratory frequency, respiratory amplitude and ventilation were estimated with the strain gauge. We found that antero-posterior and medio-lateral sway amplitude and velocity as well as sway surface during breath holding and during quiet breathing were the same, so breath holding didn't influence the postural stability. However, the spectral parameters in the antero-posterior direction shifted to the high frequency range due to an alteration of the respiratory muscles' contractions during breath holding versus quiet breath, foluntary hyperventilation caused a significant increase of all stabilographic indices that implied an impairment of the postural stability. Wfe also found that the spectral indices shifted toward the high-frequency range, and this shift was much greater compared to that during breath holding. Besides, amplitudes of the spectral peaks also increased. Perhaps, such change of the spectral indices was due to distortion of the proprioceptive information because of increased excitability of the nerve fibers during hyperventilation. Maximal inspiratory breath holding caused an activation of the postural control mechanisms. It was manifested as an elevation of the sway oscillations' frequency with no postural stability changes. Hyperventilation led to the greatest strain of the postural control and to a decrease of the postural stability, which was manifested as an increase of center of pressure oscillations' amplitude and frequency.
机译:研究了屏气和自愿过度换气对传统稳定仪参数和稳定仪信号频率特性的影响。我们在安静呼吸,自愿过度换气(20秒)和最大吸气屏气(20秒)期间,在107位健康志愿者的力量平台(“ Ritm”,俄罗斯)上测量了稳定参数。用应变计估算呼吸频率,呼吸幅度和通气量。我们发现,屏气时和安静呼吸时前后左右摇摆幅度和速度以及摇摆表面均相同,因此屏气不会影响姿势稳定性。然而,前后呼吸的频谱参数由于屏气和安静呼吸期间呼吸肌收缩的改变而移到了高频范围,自愿过度换气导致所有稳定指数的显着增加,这暗示着对呼吸的损害。姿势稳定。 Wfe还发现,频谱指数向高频范围移动,与屏住呼吸时相比,这种移动要大得多。此外,光谱峰值的幅度也增加。也许,频谱指数的这种变化是由于在过度换气过程中神经纤维的兴奋性增加,导致本体感受信息失真。最大吸气屏气引起姿势控制机制的激活。它表现为摇摆振动频率的升高,且姿势稳定性没有变化。过度换气导致姿势控制的最大压力并导致姿势稳定性的降低,这表现为压力振荡中心的振幅和频率增加。

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