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首页> 外文期刊>International Journal of Industrial Ergonomics >Spectral analysis of cerebral oxygenation responses to seated whole-body vibration in healthy men
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Spectral analysis of cerebral oxygenation responses to seated whole-body vibration in healthy men

机译:健康男性大脑氧合对坐着的全身振动的光谱分析

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摘要

The objective of this study was to assess the effects of WBV on cerebral oxygenation oscillations of the pre-frontal cortex region in healthy men based on the wavelet transform of near-infrared spectroscopy (NIRS) signals. On three separate days, twelve participants were exposed to WBV (3, 4.5 and 6 Hz) in a randomized order. Cerebral oxygenation signal was monitored from the left frontal lobe using NIRS before, during and recovery from WBV. With spectral analysis based on wavelet transform, five frequency intervals were identified (I, 0.005-0.02 Hz; II, 0.02-0.06 Hz; III, 0.06-0.15 Hz; IV, 0.15-0.40 Hz; and V, 0.40-2.0 Hz). It was found that at WBV 4.5 and 6 Hz, the amplitudes of the Δ[Hb], Δ[HbO_2] and Δ[tHb] oscillations during WBV in the frequency intervals I, II, III and V were higher as compared to that of at 3 Hz. However, no significant differences in the amplitude of cerebral oxygenation oscillations were found between WBV frequencies 4.5 and 6 Hz. This study demonstrates that WBV at 4.5 Hz induce highest cerebral oscillation responses. The enhancement of the cerebral spontaneous oscillation activity indicates an activation of the pre-frontal cortex region and an increased demand for oxygen. At prolonged regional neuronal activity due to vibration exposure, energy demand might exceed energy supply, and an imbalance might occur in brain regions activated. This might contribute to the development of fatigue in occupations exposed to WBV. Relevance to industry: Occupations exposed to WBV while driving are at increased risk of accidents. This study examined cerebral oxygenation oscillations in response to WBV at 3, 4.5 and 6 Hz to assess if the activation of the pre-frontal cortex region was a potential contributor to the development of central fatigue.
机译:这项研究的目的是基于近红外光谱(NIRS)信号的小波变换评估WBV对健康男性前额叶皮层区域的大脑氧合振荡的影响。在独立的三天中,以随机顺序将十二名参与者暴露于WBV(3、4.5和6 Hz)。在WBV之前,期间和之后,使用NIRS从左额叶监测大脑的氧合信号。通过基于小波变换的频谱分析,确定了五个频率间隔(I,0.005-0.02 Hz; II,0.02-0.06 Hz; III,0.06-0.15 Hz; IV,0.15-0.40 Hz;以及V,0.40-2.0 Hz) 。发现在WBV 4.5和6 Hz时,在频率间隔I,II,III和V中,WBV期间的Δ[Hb],Δ[HbO_2]和Δ[tHb]振荡的幅度高于在3 Hz但是,在WBV频率4.5和6 Hz之间没有发现大脑氧合振荡幅度的显着差异。这项研究表明,在4.5 Hz的WBV诱导最高的大脑振荡反应。脑自发振荡活动的增强表明前额叶皮层区的激活和对氧气的需求增加。由于振动暴露而导致区域神经元活动延长时,能量需求可能超过能量供应,并且在激活的大脑区域中可能发生不平衡。这可能会导致在接触WBV的职业中出现疲劳。与行业的相关性:驾车时接触WBV的职业发生事故的风险增加。这项研究检查了在3、4.5和6 Hz下响应WBV的大脑氧合振荡,以评估前额叶皮层区的激活是否是导致中枢疲劳发展的潜在因素。

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