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导向的贾亚算法用于将纳米机器人输送到癌症区域。

Directed jaya algorithm for delivering nano-robots to cancer area.

机构信息

Scientific Computing Department, Faculty of Computer and Information Sciences, Ain Shams University, Cairo, Egypt.

出版信息

Comput Methods Biomech Biomed Engin. 2020 Dec;23(16):1306-1316. doi: 10.1080/10255842.2020.1797698. Epub 2020 Jul 28.

Abstract

In the last few years, it was proposed to deliver drugs using Nano-robots for treating cancer. This paper compares between two recent and efficient algorithms for delivering Nano-robots to cancer area. These algorithms are Jaya algorithm and Directed Particle Swarm Optimization (DPSO) algorithm. In this paper, we also propose a new hybrid algorithm that combines Jaya and DPSO to speed up the process of Nano-robots delivery. The proposed algorithm is called Directed Jaya (DJaya) algorithm. Experiments have proved that the efficiency of DJaya is higher than both Jaya and DPSO. We show experimentally that DJaya starts delivering Nano-robots earlier than DPSO to facilitate the initiation of the drug release. Also, DJaya finishes delivering Nano-robots earlier than Jaya to complete the drug dose. In addition to this, DJaya groups the Nano-robots together in the target area like DPSO to speed up the drug release process. We finally propose a new strategy for destroying cancer cells efficiently with relatively small number of Nano-robots. This strategy can save 40% of Nano-robots.

摘要

在过去的几年中,有人提议使用纳米机器人来输送药物以治疗癌症。本文比较了两种最近提出的高效算法,用于将纳米机器人输送到癌症区域。这两种算法是 Jaya 算法和有向粒子群优化(DPSO)算法。在本文中,我们还提出了一种新的混合算法,该算法结合了 Jaya 和 DPSO 算法,以加快纳米机器人输送的过程。该算法称为有向 Jaya(DJaya)算法。实验证明,DJaya 的效率高于 Jaya 和 DPSO。我们通过实验表明,DJaya 比 DPSO 更早地开始输送纳米机器人,以促进药物释放的开始。此外,DJaya 比 Jaya 更早地完成输送纳米机器人的任务,以完成药物剂量。除此之外,DJaya 像 DPSO 一样将纳米机器人聚集在目标区域中,以加快药物释放过程。最后,我们提出了一种使用相对较少数量的纳米机器人高效地破坏癌细胞的新策略。该策略可以节省 40%的纳米机器人。

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