Barter Linda, Dominguez Carmen L, Carstens Earl, Antognini Joseph F
Department of Anesthesiology and Pain Medicine, University of California, Davis, CA 95616, USA.
Neurosci Lett. 2005 Jul 15;382(3):242-7. doi: 10.1016/j.neulet.2005.03.017. Epub 2005 Apr 15.
Windup is the progressive increase in neuronal response to a repetitive noxious stimulus. This response is most often observed in the spinal cord, but it is unclear how this response is manifested in supraspinal structures. We investigated the effects of isoflurane and halothane on electroencephalographic responses to repetitive noxious electrical stimuli (20 pulses at 0.1, 1 and 3 Hz) applied to the tail in rats. Halothane and isoflurane concentrations were adjusted to 0.8 and 1.2 minimum alveolar concentration (MAC), where MAC is the concentration needed to prevent gross and purposeful movement in 50% of animals. At 0.8 MAC halothane, the 3 Hz stimulus caused electroencephalographic (EEG) activation primarily by increasing the median edge frequency (MEF), while at 1.2 MAC halothane the spectral edge frequency (SEF) was increased by the 1 and 3 Hz stimuli, and the MEF was increased by the 3 Hz stimuli. At 0.8 MAC isoflurane, the 1 and 3 Hz stimuli evoked EEG activation by increasing the MEF and SEF, while at 1.2 MAC only the MEF was increased by the 1 Hz stimulus. No EEG activation occurred with the 0.1 Hz repetitive stimulus with either isoflurane or halothane. These data suggest that repetitive electrical stimulation normally associated with windup in spinal neurons can evoke EEG activation.
windup是指神经元对重复性伤害性刺激的反应逐渐增强。这种反应最常在脊髓中观察到,但尚不清楚这种反应在脊髓上结构中是如何表现的。我们研究了异氟烷和氟烷对大鼠尾巴施加重复性伤害性电刺激(0.1、1和3赫兹,20个脉冲)时脑电图反应的影响。将氟烷和异氟烷浓度调整为0.8和1.2最低肺泡浓度(MAC),其中MAC是防止50%的动物出现明显和有目的运动所需的浓度。在0.8 MAC氟烷时,3赫兹刺激主要通过增加中位边缘频率(MEF)引起脑电图(EEG)激活,而在1.2 MAC氟烷时,1和3赫兹刺激增加了频谱边缘频率(SEF),3赫兹刺激增加了MEF。在0.8 MAC异氟烷时,1和3赫兹刺激通过增加MEF和SEF引起EEG激活,而在1.2 MAC时,只有1赫兹刺激增加了MEF。使用异氟烷或氟烷时,0.1赫兹的重复性刺激均未引起EEG激活。这些数据表明,通常与脊髓神经元windup相关的重复性电刺激可引起EEG激活。