Jacobson J I
Institute of Theoretical Physics and Advanced Studies for Biophysical Research, Jupiter, FL 334377-1418, USA.
Panminerva Med. 1994 Dec;36(4):201-5.
The objective of this study is analysis of the clinical efficacy of picotesla magnetic fields in the treatment of epilepsy, Parkinson's disease and multiple sclerosis. The method utilized involved the exogenous application of physiologic, very weak magnetic fields to the brain by Sandyk, Anninos, Derpapas and Tsagas. The magnetic device produced a magnetic field ranging from about 5 x 10(-8) gauss to about 2.5 x 10(-7) gauss at frequencies of 2 to 7 Hertz. The wave form was sinusoidal and the device was positioned about the posterior portion of the corpus callosum most specifically to influence the pineal gland. Direct correlation of melatonin production with magnetic field stimulation was established. Amelioration or palliation of the neurological conditions was observed over an extended period of time in most cases. It appeared that a resonance situation was established between the magnetic field and melatonin which could be explained with Jacobson Resonance. These studies begin to point to the explanation of the mechanism of interaction between non-ionizing electromagnetic radiation and biological systems. Furthermore, the evaluation of the pineal gland as an magneto-sensitive gland may help us understand fundamental conditions in magneto-receptors of biological systems in terms of their piezoelectric nature.
本研究的目的是分析皮特斯拉磁场在治疗癫痫、帕金森病和多发性硬化症方面的临床疗效。所采用的方法是由桑迪克、安尼诺斯、德尔帕帕斯和察加斯对外源性施加生理性的极弱磁场于大脑。该磁疗设备产生的磁场范围约为5×10⁻⁸高斯至约2.5×10⁻⁷高斯,频率为2至7赫兹。波形为正弦波,该设备放置在胼胝体后部附近,最主要是为了影响松果体。建立了褪黑素分泌与磁场刺激之间的直接关联。在大多数情况下,经过较长一段时间观察到神经病症有所改善或缓解。似乎在磁场与褪黑素之间建立了一种共振情况,这可用雅各布森共振来解释。这些研究开始指向非电离电磁辐射与生物系统之间相互作用机制的解释。此外,将松果体评估为磁敏腺体可能有助于我们从生物系统磁受体的压电性质方面理解其基本情况。