首页> 外文会议>Yugoslav Materials Research Society Conference(YUCOMAT VI); 20040913-17; Herceg Novi(YU) >A Kink-Soliton Model of Charge Transport Through Microtubular Cytoskeleton
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A Kink-Soliton Model of Charge Transport Through Microtubular Cytoskeleton

机译:通过微管细胞骨架的电荷传递的扭结孤子模型。

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Contemporary trends in science and technology are characterized by integration of biological and technical systems, like in nanotechnology, nanobiology, and quantum medicine. In our case, we were motivated by a necessity to understand charge transport through microtubular cytoskeleton as a constitutive part of acupuncture system. The high frequency component of acupuncture currents, widely exploited in microwave resonance stimulation of acupuncture system in the past decade, implies that explanation of the cytoplasmatic conductivity should be sought in the framework of Frohlich theory. Accordingly, in this paper we critically analyze the problem of the microwave coherent longitudinal electrical oscillations as a theoretical basis for understanding soliton phenomena in microtubules, showing that charged kink-soliton nonlinear microtubular excitations might be a good candidate for charge transport in microtubules.
机译:科学技术的当代趋势以生物技术系统的集成为特征,例如纳米技术,纳米生物学和量子医学。在我们的案例中,我们有必要了解通过微管细胞骨架作为针刺系统组成部分的电荷传输。在过去的十年中,针刺电流的高频分量在针刺系统的微波共振刺激中得到了广泛的应用,这意味着应该在Frohlich理论的框架内寻求对细胞质电导率的解释。因此,在本文中,我们对微波相干纵向电振荡问题进行了批判性分析,作为理解微管中孤子现象的理论基础,表明带电的扭结孤子非线性微管激发可能是微管中电荷传输的良好选择。

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