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Control system for autonomous medical nanorobots

机译:自主医疗纳米机器人的控制系统

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摘要

Medical science is improving day by day with the blessings of new scientific discoveries. New precious and automated procedures are being discovered on a regular basis. Such a new discovery is the idea of self guided nanorobots. Nanorobot is a very promising tool for future medicine, medical technology and procedures. Artificially intelligent nanorobots can be made which will be able to repair tissues, clean blood vessels and airways, transform our physiological capabilities, and even potentially counteract the aging process [1]. Scientists around the world are working on this excellent field of nanorobotics especially on Alzheimer disease and cancer treatments [2]. Many researchers are also working on nanomanipulation, nanopositioning and also on the nano-level control systems [3, 4]. In this paper we are going to propose a nanorobotic control system which can repair damaged nervous system and give solution to a disease called dymyelination. This paper describes an innovative approach for the development of nanorobots that use neural network for medical target identification which is in this case the damaged nuerons. The nanorobots operate in an environment with nerve signals carrying nerve impulses, then find the neuron that is suffering the loss of myelin sheath and deliver myelin sheath there. Our work addresses the possible applications of such nanorobots and presenting a control system for their autonomous movement.
机译:有了新的科学发现,医学科学正在日新月异。定期会发现新的珍贵和自动化程序。这样的新发现是自导纳米机器人的想法。 Nanorobot是用于未来医学,医疗技术和程序的非常有前途的工具。可以制造出能够修复组织,清洁血管和气道,改变我们的生理能力甚至可能抵消衰老过程的人工智能纳米机器人。世界各地的科学家都在研究纳米机器人这一出色的领域,特别是在阿尔茨海默氏病和癌症治疗方面[2]。许多研究人员也在致力于纳米操纵,纳米定位以及纳米级控制系统[3,4]。在本文中,我们将提出一种纳米机器人控制系统,该系统可以修复受损的神经系统,并解决所谓的髓鞘变性疾病。本文介绍了一种创新的方法,用于开发使用神经网络进行医学目标识别的纳米机器人,在这种情况下,这是受损的核。纳米机器人在带有承载神经冲动的神经信号的环境中运行,然后找到遭受髓鞘丢失的神经元,然后将髓鞘输送到那里。我们的工作解决了此类纳米机器人的可能应用,并提出了用于其自动运动的控制系统。

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