Interpolation Methods Applied on Biomolecules and Condensed Matter Brownian Motion

Interpolation Methods Applied on Biomolecules and Condensed Matter Brownian Motion
复制标题

插值方法应用于生物分子和凝聚态布朗运动

DOI:
10.1142/s0218126622500748
复制
发表时间:
2022
期刊:
Systems and Computers
影响因子:
--
通讯作者:
Vlahovic, Branislav
Vlahovic, Branislav
中科院分区:
--
文献类型:
--
作者:
Aleksic, Sanja;Markovic, Bojana;Mitic, Vojislav V.;Milosevic, Dusan;Milosevic, Mimica;Sokovic, Marina;Vlahovic, Branislav

文献摘要

被引文献

相似文献

生物物理和凝聚态系统的连接是非常重要的,现在由于需要一个新的方法在微电子生物设备,生物计算机或生物芯片的先进发展。考虑到生命系统和非生命系统的亚微粒是相同的,我们可以建立这两个粒子系统之间的双唯一对应关系,作为基于布朗运动分形性质相似性的仿生关联,作为整体属性。在我们的研究中,我们使用了在音乐等能量脉冲影响下细菌运动的实验结果,以及一些生物分子运动数据。我们的目标是通过引入数学解析形式,应用布朗运动分形性质刻画和分形插值,定义生物物理和物理粒子系统之间的关系。这项工作是高级微电子集成新解决方案领域的前沿研究,其中包括亚微生物系统,甚至有机微电子考虑的一部分,以及固态溶液中的粒子作为非有机部分的一些物理系统。我们的研究是基于布朗运动的最小联合性质内的综合生物物理系统的整体性的性质。
Biophysical and condensed matter systems connection is of great importance nowadays due to the need for a new approach in microelectronic biodevices, biocomputers or biochips advanced development. Considering that the living and nonliving systems’ submicroparticles are identical, we can establish the biunivocally correspondent relation between these two particle systems, as a biomimetic correlation based on Brownian motion fractal nature similarities, as the integrative property. In our research, we used the experimental results of bacterial motion under the influence of energetic impulses, like music, and also some biomolecule motion data. Our goal is to define the relation between biophysical and physical particle systems, by introducing mathematical analytical forms and applying Brownian motion fractal nature characterization and fractal interpolation. This work is an advanced research in the field of new solutions for high-level microelectronic integrations, which include submicrobiosystems like part of even organic microelectronic considerations, together with some physical systems of particles in solid-state solutions as a nonorganic part. Our research is based on Brownian motion minimal joint properties within the integrated biophysical systems in the wholeness of nature.