Molecular machinery-a nanorobotics control system design for cancer drug delivery

Sankar Karan, D. D. Majumder
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引用次数: 12

Abstract

We present a new approach within mathematical formalisms for the problem of self assembly in molecular systems automation and its application in targeted drug delivery for cancer treatment. The problem under study concentrates its main focus on nano-robot control systems design including systems casualty, state notation and automata. We also describe the theory of nano-scale thermodynamically driven self assembly for collaborative information processing in a Bio-nanorobotics systems. A fuzzy shaped based approach is described in context of recognizing a single malignant cell along with its stage, as a target for medical treatment. The synthesis and imaging of magnetic nanoparticles, that can be functionally bind with the medicine and reached the effected regions for targeted drug delivery, such as in cancer treatment is also presented. A cybernetics approach for control, communication and computation in infinitesimal machinery systems with integration to complex man-machines systems in the light of general systems theory is suggested.
分子机械-一种用于癌症药物输送的纳米机器人控制系统设计
我们提出了一种新的数学形式方法来解决分子系统自动化中的自组装问题及其在癌症治疗靶向药物输送中的应用。所研究的问题主要集中在纳米机器人控制系统的设计上,包括系统伤亡、状态符号和自动机。我们还描述了生物纳米机器人系统中用于协同信息处理的纳米级热力学驱动自组装理论。在识别单个恶性细胞及其阶段的背景下,描述了一种模糊形状的方法,作为医学治疗的目标。本文还介绍了磁性纳米颗粒的合成和成像,这些纳米颗粒可以与药物功能结合并到达靶向药物递送的影响区域,例如在癌症治疗中。从一般系统理论出发,提出了一种具有复杂人机系统集成的无穷小机械系统的控制、通信和计算的控制论方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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