Shetty Neetha J, Swati P, David K
Department of Periodontics, Manipal College of Dental Sciences, Mangalore, Manipal University, India.
Saudi Dent J. 2013 Apr;25(2):49-52. doi: 10.1016/j.sdentj.2012.12.002. Epub 2013 Jan 17.
The purpose of this paper is to review the phenomenon of nanotechnology as it might apply to dentistry as a new field called nanodentistry. Treatment possibilities might include the application of nanotechnology to local anesthesia, dentition renaturalization, the permanent cure for hypersensitivity, complete orthodontic realignment in a single visit, covalently bonded diamondized enamel, and continuous oral health maintenance using mechanical dentifrobots. Dental nanorobots could be constructed to destroy caries-causing bacteria or to repair tooth blemishes where decay has set in, by using a computer to direct these tiny workers in their tasks. Dental nanorobots might be programed to use specific motility mechanisms to crawl or swim through human tissue with navigational precision, to acquire energy, to sense and manipulate their surroundings, to achieve safe cytopenetration, and to use any of a multitude of techniques to monitor, interrupt, or alter nerve-impulse traffic in individual nerve cells in real time.
本文旨在探讨纳米技术在牙科领域的应用,即一个名为纳米牙科的新领域。其治疗可能性可能包括将纳米技术应用于局部麻醉、牙齿自然修复、永久性治疗牙齿过敏、一次就诊完成完全正畸矫正、共价键合的金刚石化牙釉质,以及使用机械洁齿机器人进行持续的口腔健康维护。可以构建牙科纳米机器人来消灭致龋细菌,或修复已出现龋齿的牙齿瑕疵,通过计算机指导这些微小的工作者完成任务。牙科纳米机器人可能被编程使用特定的运动机制,以精确导航的方式在人体组织中爬行或游动,获取能量,感知和操纵周围环境,实现安全的细胞穿透,并使用多种技术中的任何一种实时监测、中断或改变单个神经细胞中的神经冲动传输。