首页> 外文会议>Saratov Meeting >Analysis of thermal damage in vocal cords for the prevention of collateral laser treatment effects
【24h】

Analysis of thermal damage in vocal cords for the prevention of collateral laser treatment effects

机译:防治抵抗激光治疗效果的声带热损伤分析

获取原文

摘要

The importance of vocal cords for the interaction with the world around is obviously known. Vocal cords disorders can be divided mainly into three categories: difficulty of movement of one or both vocal folds, lesion formation on them, and difficulty or lack of mucosal wave movement. In this last case, a laser heating treatment can be useful in order to improve tissue vibration. However, thermal damage should be considered to adjust laser parameters and so to prevent irreversible harmful effects to the patient. in this work, an analysis of thermal damage in vocal folds is proposed. Firstly thermo-optical laser-tissue interaction is studied, by means of a RTT (Radiation Transfer Theory) model solved with a Monte Carlo approach for the optical propagation of radiation, and a bio-heat equation, with a finite difference numerical method based solution, taking into account blood perfusion and boundary effects, for the thermal distribution. The spatial-temporal temperature distributions are obtained for two widely used lasers, Nd:YAG (1064 nm) and KTP (532 nm). From these data, an Arrhenius thermal damage analysis allows a prediction of possible laser treatment harmful effects on vocal cords that could cause scar formation or tissue burn. Different source powers and exposition times are considered, in such a way that an approximation of adequate wavelength, power and duration is achieved, in order to implement an efficient and safe laser treatment.
机译:声带对世界各地互动的重要性显然是已知的。声带障碍物主要可以分为三类:一个或两个声乐折叠的难度,对它们的病变形成,难度或缺乏粘膜波运动。在最后一个情况下,激光加热处理可用于改善组织振动。然而,应考虑热损坏以调节激光参数,从而防止对患者的不可逆的有害影响。在这项工作中,提出了声学折叠热损伤的分析。通过RTT(放射线转移理论)模型用蒙特卡罗方法解决了用于光学传播的RTT(放射线转移理论)的RTT(辐射转移理论),具有基于有限差分数值方法的RTT(放射线转移理论)模型研究了热光学激光组织相互作用。基于有限差分数值方法,考虑到血液灌注和边界效应,用于热分布。获得两个广泛使用的激光器,Nd:YAG(1064nm)和KTP(532nm)的空间温度分布。从这些数据来看,Arrhenius热损伤分析允许预测可能导致瘢痕形成或组织烧伤的声带可能的激光处理有害影响。考虑不同的源功率和博览会时间,以使得实现足够的波长,功率和持续时间的近似,以实现有效和安全的激光处理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号