g负荷和振动对心脏和呼吸速率的影响。

Angelica Godinez, Dorion B Liston, Ruthie Ayzenberg, William B Toscano, Patricia A Cowings, Leland S Stone
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引用次数: 6

摘要

背景:操作环境使飞行员和宇航员暴露在持续的加速度(重力载荷)和全身振动中,无论是单独的还是联合的。分别对G荷载和振动的生理效应进行了较好的研究;两者的效果与轻度运动相似。少数关于G载荷和振动的联合研究没有报道这些因素对生理反应的相互作用。方法:我们测试了G负荷(+1和+3.8 G(x))和振动(8、12和16 Hz时0.5 gx)单独和联合对心脏和呼吸速率的影响。结果:我们观察到G负荷对心率(平均每分钟增加23次,SD 12)和呼吸速率(平均每分钟增加5次,SD 5)的影响,振动对心率的影响,以及对心率的相互作用。在振动的情况下,我们观察到心率每分钟增加4次(SD: 3),而呼吸频率没有增加。在+1 G(x)条件下,最大的心率增加发生在低频(8 Hz)振动期间,而在+3.8 G(x)条件下,最大的心率增加发生在高频(16 Hz)振动期间,显示出相互作用。讨论:与之前的报道一致,我们的g负荷和振动效果与轻度运动相似。此外,我们观察到G负荷和振动对心率的相互作用,与+1 G(x)相比,+3.8 G(x)的振动频率更高,心率最高。观察到的相互作用表明g载荷和振动效应不是独立的,只有在联合暴露时才能正确评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
G-loading and vibration effects on heart and respiration rates.

Background: Operational environments expose pilots and astronauts to sustained acceleration (G loading) and whole-body vibration, alone and in combination. Separately, the physiological effects of G loading and vibration have been well studied; both have effects similar to mild exercise. The few studies of combined G loading and vibration have not reported an interaction between these factors on physiological responses.

Methods: We tested the effects of G loading (+1 and +3.8 G(x)) and vibration (0.5 gx at 8, 12, and 16 Hz), alone and in combination, on heart and respiration rate.

Results: We observed an effect of G loading on heart rate (average increase of 23 bpm, SD 12) and respiration rate (average increase of 5 breaths per minute, SD 5), an effect of vibration on heart rate, and an interaction on heart rate. With vibration, we observed heart rate increases of 4 bpm (SD: 3) with no increase in respiration rate. In the +1 G(x) condition, the largest heart rate increase occurred during low-frequency (8 Hz) vibration, while at +3.8 G(x), the largest heart rate increase occurred during high-frequency (16 Hz) vibration, demonstrating interaction.

Discussion: Consistent with previous reports, our G-loading and vibration effects are similar to mild exercise. In addition, we observed an interaction between G loading and vibration on heart rate, with maximum heart rates occurring at a higher vibration frequency at +3.8 G(x) compared to +1 G(x). The observed interaction demonstrates that G-loading and vibration effects are not independent and can only be properly assessed during combined exposure.

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来源期刊
Aviation, space, and environmental medicine
Aviation, space, and environmental medicine 医学-公共卫生、环境卫生与职业卫生
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