László János, Reiczigel Jeno, Székely László, Gasparics Antal, Bogár István, Bors László, Rácz Bernadette, Gyires Klára
Section for Mathematics, Hungarian Academy of Sciences, Budapest, Hungary.
Bioelectromagnetics. 2007 Dec;28(8):615-27. doi: 10.1002/bem.20341.
The present study deals with the analgesic effect induced by static magnetic fields (SMF) in mice exposed to the field with their whole body. It discusses how the effect depends on the distribution of the magnetic field, that is, on the specification and arrangement of the applied individual permanent magnets. A critical analysis of different magnet arrangements is given. As a result the authors propose a magnet arrangement recipe that achieves an analgesic effect of over 80% in the writhing test. This is a widely accepted screening method for animal pain and predictor of human experimental results. As a non-drug, non-invasive, non-contact, non-pain, non-addictive method for analgesia with immediate and long-lasting effect based on the stimulus of the endogenous opioid network, the SMF treatment may attract the attention of medical doctors, nurses, magnet therapists, veterinarians, physiotherapists, masseurs, and fitness trainers among others.
本研究探讨了静磁场(SMF)对全身暴露于该磁场的小鼠的镇痛作用。文中讨论了该作用如何取决于磁场分布,即所应用的单个永久磁体的规格和排列方式。对不同磁体排列进行了批判性分析。结果,作者提出了一种磁体排列方案,该方案在扭体试验中可实现超过80%的镇痛效果。扭体试验是一种广泛接受的动物疼痛筛查方法及人体实验结果的预测指标。作为一种基于内源性阿片网络刺激的非药物、非侵入性、非接触、无疼痛、无成瘾性且具有即时和长效作用的镇痛方法,静磁场治疗可能会引起医生、护士、磁疗师、兽医、物理治疗师、按摩师和健身教练等人员的关注。