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设计用于镇痛的极低频脉冲电磁场不会影响微血管对血管扩张剂乙酰胆碱的反应性。

Extremely low frequency pulsed electromagnetic field designed for antinociception does not affect microvascular responsiveness to the vasodilator acetylcholine.

作者信息

McKay Julia C, Corbacio Michael, Tyml Karel, Prato Frank S, Thomas Alex W

机构信息

Bioelectromagnetics, Imaging Program, Lawson Health Research Institute, London, Ontario, Canada.

出版信息

Bioelectromagnetics. 2010 Jan;31(1):64-76. doi: 10.1002/bem.20533.

Abstract

A 225 microT, extremely low frequency, pulsed electromagnetic field (PEMF) that was designed for the induction of antinociception, was tested for its effectiveness to influence blood flow within the skeletal microvasculature of a male Sprague-Dawley rat model (n = 103). Acetylcholine (0.1, 1.0, or 10 mM) was used to perturb normal blood flow and to delineate differential effects of the PEMF, based on degree of vessel dilation. After both 30 and 60 min of PEMF exposure, we report no effects on peak perfusion response to acetylcholine (with only 0.2% of the group difference attributed to exposure). Spectral analysis of blood flow data was generated to obtain information related to myogenic activity (0.15-0.40 Hz), respiratory rate (0.4-2.0 Hz), and heart rate (2.0-7.0 Hz), including the peak frequency within each of the three frequency regions identified above, peak power, full width at half maximum (FWHM), and mean within band. No significant effects due to exposure were observed on myogenic activity of examined blood vessels, or on heart rate parameters. Anesthesia-induced respiratory depression was, however, significantly reduced following PEMF exposure compared to shams (although exposure only accounted for 9.4% of the group difference). This set of data suggest that there are no significant acute physiological effects of 225 microT PEMF after 30 and 60 min of exposure on peak blood flow, heart rate, and myogenic activity, but perhaps a small attenuation effect on anesthetic-induced respiratory depression.

摘要

一种为诱导抗伤害感受而设计的225微特斯拉极低频脉冲电磁场(PEMF),在雄性Sprague-Dawley大鼠模型(n = 103)的骨骼微脉管系统中,对其影响血流的有效性进行了测试。使用乙酰胆碱(0.1、1.0或10 mM)干扰正常血流,并根据血管扩张程度来描述PEMF的不同作用。在PEMF暴露30分钟和60分钟后,我们报告其对乙酰胆碱的峰值灌注反应没有影响(组间差异仅有0.2%归因于暴露)。生成血流数据的频谱分析以获取与肌源性活动(0.15 - 0.40 Hz)、呼吸频率(0.4 - 2.0 Hz)和心率(2.0 - 7.0 Hz)相关的信息,包括上述三个频率区域各自的峰值频率、峰值功率、半高宽(FWHM)和频段内均值。未观察到暴露对所检查血管的肌源性活动或心率参数有显著影响。然而,与假暴露组相比,PEMF暴露后麻醉诱导的呼吸抑制显著降低(尽管暴露仅占组间差异的9.4%)。这组数据表明,暴露30分钟和60分钟后,225微特斯拉PEMF对峰值血流、心率和肌源性活动没有显著的急性生理影响,但可能对麻醉诱导的呼吸抑制有轻微的减弱作用。

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