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采用具有创新脉冲设计(微脉宽模式)的二极管激光对旁侧组织损伤的水/空气冷却影响-一项体外研究。

The influence of water/air cooling on collateral tissue damage using a diode laser with an innovative pulse design (micropulsed mode)-an in vitro study.

机构信息

Department of Conservative Dentistry, Dental School, Medical University Vienna, Vienna, Austria.

出版信息

Lasers Med Sci. 2013 May;28(3):965-71. doi: 10.1007/s10103-012-1186-0. Epub 2012 Aug 22.

Abstract

Since the diode laser is a good compromise for the daily use in dental offices, finding usage in numerous dental indications (e.g., surgery, periodontics, and endodontics), the minimization of the collateral damage in laser surgery is important to improve the therapeutical outcome. The aim of this study was to investigate the effect of water/air cooling on the collateral thermal soft tissue damage of 980-nm diode laser incisions. A total of 36 mechanically executed laser cuts in pork liver were made with a 980-nm diode laser in micropulsed mode with three different settings of water/air cooling and examined by histological assessment to determine the area and size of carbonization, necrosis, and reversible tissue damage as well as incision depth and width. In our study, clearly the incision depth increased significantly under water/air cooling (270.9 versus 502.3 μm-test group 3) without significant changes of incision width. In test group 2, the total area of damage was significantly smaller than in the control group (in this group, the incision depth increases by 65 %). In test group 3, the total area of damage was significantly higher (incision depth increased by 85 %), but the bigger part of it represented a reversible tissue alteration leaving the amount of irreversible damage almost the same as in the control group. This first pilot study clearly shows that water/air cooling in vitro has an effect on collateral tissue damage. Further studies will have to verify, if the reduced collateral damage we have proved in this study can lead to accelerated wound healing. Reduction of collateral thermal damage after diode laser incisions is clinically relevant for promoted wound healing.

摘要

由于二极管激光在牙科诊所的日常使用中是一个很好的折衷方案,适用于许多牙科适应症(例如手术、牙周病学和牙髓病学),因此最大限度地减少激光手术中的附带热损伤对于改善治疗效果很重要。本研究旨在探讨水/气冷却对 980nm 二极管激光切口的附带热软组织损伤的影响。使用 980nm 二极管激光在微脉冲模式下对猪肝进行了总共 36 次机械执行的激光切割,并用组织学评估进行了检查,以确定碳化、坏死和可逆组织损伤的面积和大小,以及切口深度和宽度。在我们的研究中,水/气冷却明显增加了切口深度(270.9μm 与 502.3μm-实验组 3),而切口宽度没有明显变化。在实验组 2 中,损伤总面积明显小于对照组(在该组中,切口深度增加了 65%)。在实验组 3 中,损伤总面积明显较高(切口深度增加了 85%),但较大的部分代表了一种可逆的组织改变,使不可逆损伤的数量几乎与对照组相同。这项初步的试点研究清楚地表明,体外水/气冷却对附带组织损伤有影响。进一步的研究将不得不验证,我们在这项研究中证明的减少附带损伤是否可以加速伤口愈合。减少二极管激光切口后的附带热损伤对促进伤口愈合具有临床意义。

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