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探索基因及相关结构的磁重结晶在神经再生和癌症方面的潜力

"Exploring the potential of magneto-recrystallization of genes and associated structures with respect to nerve regeneration and cancer".

作者信息

Jacobson J I

机构信息

Institute of Theoretical Physics and Advanced Studies for Biophysical Research, Jupiter, Florida 33458.

出版信息

Int J Neurosci. 1992 May-Jun;64(1-4):153-65. doi: 10.3109/00207459209000541.

Abstract

Very weak magnetic fields have been shown to be associated with the human brain and heart. These fields, apparently physiologic, are about one million times weaker than the geomagnetic, the earth's steady magnetic field, which measures about 0.5 gauss. Fields of about 10(-8) gauss are perhaps correlable to genomic masses and associated structures like peptide hormone trophic factors. The connection between genes and magnetic fields is made from a new form of resonance called Jacobson Resonance. Jacobson Resonance, represented by the equation mc2 = Bvl coulomb, is explained. Indeed, we may view the possibility of linking human electromagnetic interactions with mechanical vibrations of the crystalline lattices of genes and associated critical molecules like growth factors. As these fields are applied to the equations for solenoidal models, currents of about a microampere are derived; in perfect accord with recent clinical data indicating the therapeutic efficacy of weak currents in repair and growth of soft tissue, bone and nerve. The mechanism of reorientation of spin angular momentum of electrons and protons influencing molecular magnetic domains to bring about 'particle jumps' is presented so that a clinical picture results. The clinical picture is that of an organism placed at right angles to flux lines in the midst of a solenoid immersed in water exposed then to exogenously applied resonant physiologic magnetic fields. They may convert malalligned atomic lattices of oncogenes and associated particles to homologous normal structures which may promulgate an adjustment to physiological homeostasis.

摘要

极弱磁场已被证明与人类大脑和心脏有关。这些磁场显然是生理性的,比地磁场(地球稳定磁场,约为0.5高斯)弱约一百万倍。约10^(-8)高斯的磁场可能与基因组物质以及肽类激素营养因子等相关结构有关。基因与磁场之间的联系是由一种名为雅各布森共振的新共振形式建立的。文中解释了以方程mc2 = Bvl库仑表示的雅各布森共振。实际上,我们可以考虑将人类电磁相互作用与基因以及生长因子等相关关键分子的晶格机械振动联系起来的可能性。当将这些磁场应用于螺线管模型的方程时,可得出约一微安的电流;这与最近的临床数据完全一致,这些数据表明弱电流在软组织、骨骼和神经的修复与生长中具有治疗效果。文中还介绍了电子和质子的自旋角动量重新定向影响分子磁畴从而导致“粒子跳跃”的机制,进而呈现出一种临床现象。这种临床现象是指一个生物体置于与螺线管磁通线成直角的位置,该螺线管浸于水中,然后暴露于外部施加的共振生理磁场中。它们可能会将癌基因及相关粒子排列紊乱的原子晶格转化为同源的正常结构,这可能会促使机体调整至生理稳态。

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