Parker Steven, Cronshaw Mark, Anagnostaki Eugenia, Mylona Valina, Lynch Edward, Grootveld Martin
Leicester School of Pharmacy, De Montfort University, Leicester LE1 9BH, UK.
School of Dental Medicine, University of Nevada Las Vegas, Las Vegas, NV 89154, USA.
Dent J (Basel). 2020 Jun 28;8(3):61. doi: 10.3390/dj8030061.
Fundamental to the adjunctive use of laser photonic energy for delivering therapy and tissue management, is the ability of the incident energy to be absorbed by target tissues. The aim of this review is to examine the differential performance of the separate components of oral hard and soft tissues when exposed to laser photonic irradiance of variable wavelengths and power values. Through an examination of peer-reviewed published data and materials, the interaction of laser photonic energy and target tissues are explored in detail. Varying laser wavelength emissions relative to anatomical structures explores the ability to optimise laser-tissue interactions, and also identifies possible risk scenarios as they apply to adjacent non-target structures. The concepts and practical aspects of laser photonic energy interactions with target oral tissues are clearly demonstrated. Emphasis was placed on optimising the minimum level of laser power delivery in order to achieve a desired tissue effect, whilst minimising the risk or outcome of collateral tissue damage.
激光光子能量辅助用于治疗和组织管理的基础是入射能量被靶组织吸收的能力。本综述的目的是研究口腔硬组织和软组织的不同组成部分在暴露于可变波长和功率值的激光光子辐照时的差异表现。通过审查同行评审的已发表数据和材料,详细探讨激光光子能量与靶组织的相互作用。相对于解剖结构的不同激光波长发射探索了优化激光与组织相互作用的能力,并确定了适用于相邻非靶结构的可能风险情况。清晰展示了激光光子能量与口腔靶组织相互作用的概念和实际方面。重点在于优化激光能量传递的最低水平,以实现所需的组织效果,同时将附带组织损伤的风险或结果降至最低。