Atmeh Amre R, Watson Timothy F
Department of Restorative Dental Science , College of Dentistry, University of Dammam , Dammam , Kingdom of Saudi Arabia.
Tissue Engineering and Biophotonics Division , King's College London Dental Institute , Floor 17, Guy's Tower, Guy's Hospital, London SE1 9RT , UK.
Interface Focus. 2016 Jun 6;6(3):20150113. doi: 10.1098/rsfs.2015.0113.
Cutting of the dental hard tissues is an integral part of restorative dentistry. Cutting of the root dentine is also needed in preparation prior to endodontic treatment, with significant commercial investment for the development of flexible cutting instruments based around nickel titanium (NiTi) alloys. This paper describes the evolution of endodontic cutting instruments, both in materials used, e.g. the transition from stainless steel to NiTi, and the design of the actual instruments themselves and their method of activation-by hand or motor driven. We have been examining tooth-cutting interactions microscopically for over 25 years using a variety of microscopic techniques; in particular, video-rate confocal microscopy. This has given a unique insight into how many of the procedures that we take for granted are achieved in clinical practice, by showing microscopic video images of the cutting as it occurs within the tooth. This technology has now been extended to allow imaging of the endodontic instrument and the root canal wall for the first time. We are able to image dentine distortion and crack propagation during endodontic filing of the root canal space. We are also able to visualize the often claimed, but seldom seen action of contemporary endodontic instruments.
切割牙齿硬组织是修复牙科的一个重要组成部分。在进行牙髓治疗之前的准备工作中,也需要切割牙根牙本质,这推动了围绕镍钛(NiTi)合金开发柔性切割器械的大量商业投资。本文描述了牙髓切割器械的发展历程,包括所用材料的演变,例如从不锈钢到镍钛合金的转变,以及实际器械本身的设计及其激活方式——手动或电动。25多年来,我们一直使用各种显微技术,特别是视频速率共聚焦显微镜,从微观角度研究牙齿切割相互作用。这通过展示牙齿内部切割过程的微观视频图像,让我们对许多在临床实践中被视为理所当然的操作是如何实现的有了独特的见解。这项技术现已扩展,首次能够对牙髓器械和根管壁进行成像。我们能够在根管空间进行牙髓锉削时对牙本质变形和裂纹扩展进行成像。我们还能够可视化当代牙髓器械常被提及但很少见到的作用。