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Possible Action Mechanism of the Electromagnetic Fields in the Liver Cancer Development: A Mathematical Proposal

机译:肝癌发展中电磁场的可能动作机制:数学建议

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Currently it is known that electromagnetic field exposure can induce biological changes, although the precise effects and action mechanism of the interaction between the electromagnetic field and biological systems are not well understood. In this work we propose a possible action mechanism, concerning the effect that the extremely low frequency electromagnetic field exposure has on the early stage of liver cancer development. The model is developed studying the phenomena called oxidative stress that it appears after it is applied a carcinogenic agent used to induce hepatic cancer chemically in an experimental animal model. This physical-chemical process involves the movement of magnetic field dependent free charged particles, called free radicals. We will consider the use of the radical pairs theory as a framework, in which we will describe the spin density operator evolution by implementing the stochastic Liouville equation with hyperfine interaction. This describes how the selectivity of the interaction between spin states of the free radicals with the applied electromagnetic field, influences the development of pre-neoplastic lesions in the liver.
机译:目前,已知电磁场暴露可以诱导生物学变化,尽管电磁场与生物系统之间的相互作用的精确效果和动作机制尚不清楚。在这项工作中,我们提出了一个可能的行动机制,关于极低频率电磁场暴露在肝癌发育早期阶段的影响。该模型是研究了研究其出现的现象,即它在应用中施加一种用于在实验动物模型中化学诱导肝癌的致癌剂。该物理化学过程涉及磁场依赖性带电粒子的运动,称为自由基。我们将考虑使用激进对理论作为框架,其中我们将通过利用Hyperfine相互作用的随机锂脉络方程来描述旋转密度操作员演化。这描述了如何利用施加的电磁场的自由基的自由基之间的相互作用的选择性如何影响肝脏中预瘤的发育。

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