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Changes in EEG During Graded Exercise on a Recumbent Cycle Ergometer

机译:斜卧式测功机上的分级运动过程中脑电图的变化

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摘要

Previous studies have shown changes in brain activity as a result of exercise; however, few studies have examined changes during exercise. The purpose of this study was to examine brain activity during a graded exercise test. Twenty male participants performed a graded exercise test on a recumbent cycle ergometer. Exercise intensity was set initially at 50W and was increased by 50W every 2 minutes until volitional fatigue was reached. Electroencephalography (EEG) was measured prior to the onset of exercise, during the last minute of each stage of exercise, immediately post-exercise, and 10 minutes into recovery. EEG was recorded from 8 scalp sites leading to analysis of alpha 1, alpha 2, beta 1, beta 2, and theta activities. Expired air was collected and analyzed for ventilation rate (VE), VO2, % of peak VO2, and Respiratory Exchange Ratio (RER). No differences were seen in EEG between the hemispheres of the brain. There was, however, a significant increase in brain activity across the spectrum occurring at 200 W through immediately post-exercise. Brain activity returned to pre- exercise levels by 10 minutes post. VO2, % of peak VO2 and RER increased linearly with exercise intensity. VE increased linearly through 200 W; however, a disproportionate increase was seen in VE from 200 W to peak exercise. The results of this investigation demonstrate that brain activity may be related to exercise intensity. Future research will want to examine how these changes in brain activity influence affective, perceptual and cognitive changes often associated with exercise. Efforts will also need to be made to determine if changes in brain activity during exercise are mediated by central (within the brain) or peripheral mechanisms.Key points class="unordered" style="list-style-type:disc">EEG can be recorded during exercise.Brain EEG activity increases during exercise and may be related to exercise intensity.Brain EEG activity returns to resting levels quickly after the cessation of exercise.
机译:先前的研究表明,运动后大脑活动发生了变化。但是,很少有研究检查运动过程中的变化。这项研究的目的是在分级运动测试中检查大脑活动。二十名男性参与者在卧式自行车测功机上进行了分级运动测试。运动强度最初设置为50W,每2分钟增加50W,直到达到疲劳程度。脑电图(EEG)在运动开始之前,运动的每个阶段的最后一分钟,运动后立即以及恢复10分钟后进行测量。从8个头皮部位记录了脑电图,从而分析了α1,α2,β1,β2和theta活性。收集呼出的空气并分析通气率(VE),VO2,峰值VO2的百分比和呼吸交换率(RER)。脑半球之间的脑电图未见差异。然而,通过立即运动后,在200 W时发生的整个频谱的大脑活动显着增加。十分钟后大脑活动恢复到运动前的水平。 VO2,峰值VO2和RER的百分比随运动强度线性增加。 VE线性增加至200 W;然而,从200 W到峰值运动,VE的增加不成比例。这项调查的结果表明,大脑活动可能与运动强度有关。未来的研究将要研究大脑活动的这些变化如何影响经常与运动有关的情感,知觉和认知变化。还需要做出努力,以确定运动过程中大脑活动的变化是否是由中枢(大脑内部)或周围机制介导的。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 在运动过程中可以记录脑电图。 在运动过程中脑电图活动增加运动,可能与运动强度有关。 停止运动后脑电图的活动迅速恢复到静息状态。

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