Department of Smart Foods and Drugs, Inje University, Gimhae 621-749, Republic of Korea.
Respir Physiol Neurobiol. 2012 Apr 30;181(2):177-82. doi: 10.1016/j.resp.2012.02.010. Epub 2012 Mar 8.
Hyperventilation is one way to cause activation on the electroencephalogram (EEG) to diagnose brain disorders. The hyperventilation is also known to affect on the delta power in EEG. This study divided the total delta wave into low, middle, and high bands corresponding to the wave frequency. The power in these three delta wave bands was examined in the frontal cranial region of adult male Sprague-Dawley rats hyperventilated with ventilation (VE) of 360, 540, and 720 ml/min for 5 min. The control group was ventilated normally with a volume of 160 ml/min. The results show that the relative power of the low delta band in the rats hyperventilated at 360 ml/min VE was significantly increased compared with powers of pre-hyperventilation (p<0.05). The relative power of the middle delta band was not significantly affected by hyperventilation at any VE, and in the high delta band, all of the relative powers were decreased significantly in all hyperventilated rats compared with powers of pre-hyperventilation (p<0.05). We concluded that hyperventilation affects the frontal cranial region, by increasing the low delta band and decreasing the high delta band.
过度通气是一种通过引发脑电图(EEG)激活来诊断脑部疾病的方法。过度通气也被认为会影响脑电图中的δ波功率。本研究将总δ波分为低频、中频和高频三个波段,分别对应于波的频率。在 5 分钟内,以 360、540 和 720ml/min 的通气量(VE)对成年雄性 Sprague-Dawley 大鼠进行过度通气,并检查额颅区这三个δ波段的功率。对照组以 160ml/min 的体积正常通气。结果表明,VE 为 360ml/min 时过度通气组大鼠的低频 δ 带相对功率明显高于预过度通气时的功率(p<0.05)。中频 δ 带的相对功率不受任何 VE 过度通气的影响,而在高频 δ 带中,所有过度通气大鼠的相对功率均明显低于预过度通气时的功率(p<0.05)。我们得出结论,过度通气通过增加低频 δ 带和减少高频 δ 带来影响额颅区。