Vorobyov Vasily, Yurkov Igor, Belova Natalia, Lednev Valery
Institute of Cell Biophysics Russian Academy of Sciences, Pushchino, Moscow Region, Russia.
Brain Res Bull. 2009 Aug 28;80(1-2):1-8. doi: 10.1016/j.brainresbull.2009.06.010. Epub 2009 Jun 25.
To learn whether the low flux density combined magnetic field (CMF) can affect rats pretreated with a dopamine agonist, the frequency spectra of cortical and hippocampal EEG were studied after intraperitoneal injection of agroclavine (50 microg/kg, Day 1) either alone (N=5) or combined with 30-min exposure to CMF (B(AC)=50 microT, f(AC)=20.9Hz, B(DC)=27.3 microT) (N=5) an hour post-injection. The CMF caused an immediate and robust increase in the hippocampal beta(2) activity (22.5-30.5Hz) vs. its value in the pre-exposure period. This effect persisted during 30-min post-exposure period. After vehicle injection (0.1% ethanol) on Day 10, the beta(2) activity increased gradually during the exposure to CMF and was at the pre-exposure level during the post-exposure period. In two rats, pretreated with the vehicle on Day 1, CMF increased a hippocampal beta(2) level. The effect was about half the amplitude and shorter in duration than that after agroclavine, with no effects in the post-exposure period. However, during the 2nd exposure to CMF, started 30 min later, cortical and hippocampal beta activity was significantly greater than that during the 1st. On Day 10, the 1st exposure was completely ineffective, while during the 2nd, the hippocampal beta(2) activity was increased gradually. These results demonstrate that dopaminergic activation can potentiate CMF-evoked EEG effects in the hippocampal beta(2) frequency band.
为了解低通量密度复合磁场(CMF)是否会影响经多巴胺激动剂预处理的大鼠,在腹腔注射麦角新碱(50微克/千克,第1天)后,研究了单独注射(N = 5)或注射后1小时联合30分钟暴露于CMF(B(AC)=50微特斯拉,f(AC)=20.9赫兹,B(DC)=27.3微特斯拉)(N = 5)的大鼠皮质和海马脑电图的频谱。与暴露前相比,CMF使海马β(2)活动(22.5 - 30.5赫兹)立即且显著增加。这种效应在暴露后30分钟内持续存在。在第10天注射赋形剂(0.1%乙醇)后,β(2)活动在暴露于CMF期间逐渐增加,在暴露后阶段恢复到暴露前水平。在第1天用赋形剂预处理的两只大鼠中,CMF增加了海马β(2)水平。该效应的幅度约为麦角新碱后的一半,持续时间更短,暴露后阶段无效应。然而,在30分钟后开始的第二次暴露于CMF期间,皮质和海马的β活动显著高于第一次。在第10天,第一次暴露完全无效,而在第二次暴露期间,海马β(2)活动逐渐增加。这些结果表明,多巴胺能激活可增强CMF诱发的海马β(2)频段脑电图效应。