Kovács-Bálint Zsófia, Csathó Arpád, László János F, Juhász Péter, Hernádi István
Department of Experimental Zoology and Neurobiology, University of Pécs, Pécs, Hungary.
Bioelectromagnetics. 2011 Feb;32(2):131-9. doi: 10.1002/bem.20622. Epub 2010 Oct 28.
In the present experiment, the effect of a single 30 min inhomogeneous static magnetic field (SMF) exposure on thermal pain threshold (TPT) was examined in 15 young healthy human volunteers. The SMF had a maximum peak-to-peak amplitude of 330 mT with a maximum gradient of 13.2 T/m. In either of two experimental sessions (SMF or SHAM), four blocks of 12 TPT trials were carried out under SMF or SHAM exposure on all fingertips of the dominant hand, excluding the thumb. TPT and visual analog scale (VAS) data were recorded at 0, 15, and 30 min exposure time, and 30 min following exposure. SMF treatment resulted in a statistically significant increase in TPT during the entire exposure duration and diminished within-block thermal habituation, leaving pain perception unchanged. These results indicate that SMF-induced peripheral neuronal or circulatory mechanisms may be involved in the observed TPT increase by setting the pain fibre adaptation potential to higher levels.
在本实验中,对15名年轻健康的人类志愿者进行了研究,以考察单次30分钟不均匀静磁场(SMF)暴露对热痛阈值(TPT)的影响。该静磁场的最大峰峰值幅度为330 mT,最大梯度为13.2 T/m。在两个实验环节(SMF或假刺激)中的任何一个环节,在SMF或假刺激暴露下,对优势手的所有指尖(不包括拇指)进行4组,每组12次的TPT试验。在暴露时间0、15和30分钟以及暴露后30分钟记录TPT和视觉模拟量表(VAS)数据。SMF治疗导致在整个暴露期间TPT有统计学意义的增加,并减少了组内热适应,而疼痛感知没有变化。这些结果表明,SMF诱导的外周神经元或循环机制可能通过将疼痛纤维适应电位设定在更高水平而参与了观察到的TPT增加。
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