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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Thermal analgesic effects from weak, complex magnetic fields and pharmacological interactions.
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Thermal analgesic effects from weak, complex magnetic fields and pharmacological interactions.

机译:弱,复杂的磁场和药理作用引起的热镇痛作用。

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摘要

In several experiments, robust analgesia (equivalent to about 4 mg/kg of morphine) in male rats to thermal stimuli following exposures to weak (1 microT) complex magnetic fields was explored. The analgesia occurred when patterns of magnetic fields with burst-firing-like configurations were presented for 30 min once every approximately 4 s. The analgesic effects were intensity dependent. A different frequency-modulated pattern produced analgesia more quickly. The analgesic effects following exposure to the burst-firing magnetic fields were augmented conspicuously by preinjections of morphine (4 mg/kg) or agmatine (10 mg/kg), but blocked by naloxone (1 mg/kg). The results of these experiments suggest that rational design of the temporal structure of weak magnetic fields may be a novel, inexpensive, and reliable technique for elevating thresholds to some classes of painful stimuli.
机译:在几个实验中,研究了雄性大鼠在暴露于弱(1 microT)复杂磁场后对热刺激的镇痛效果(相当于约4 mg / kg吗啡)。当大约每4 s出现一次30分钟的具有突发发射状配置的磁场模式时,就会出现镇痛作用。镇痛作用是强度依赖性的。不同的调频模式可以更快地产生镇痛作用。预先注射吗啡(4 mg / kg)或胍丁胺(10 mg / kg)可显着增强暴露于爆裂磁场后的镇痛作用,但纳洛酮(1 mg / kg)可阻断镇痛作用。这些实验的结果表明,合理设计弱磁场的时间结构可能是一种新颖,廉价且可靠的技术,可以将阈值提高到某些类别的疼痛刺激。

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