Schoop Ulrich, Moritz Andreas, Kluger Wolf, Patruta Sanda, Goharkhay Kawe, Sperr Wolfgang, Wernisch Johann, Gattringer Rainer, Mrass Paulus, Georgopoulos Apostolos
Department of Conservative Dentistry, Dental School, University of Vienna, A-1090 Vienna, Währinger Strasse 25a, Austria.
Lasers Surg Med. 2002;30(5):360-4. doi: 10.1002/lsm.10054.
Until recently, the main field of Er:YAG laser application was the removal of dental hard substances within the scope of cavity preparation. Nowadays, several new delivery-systems are available, permitting the application of the Er:YAG laser in endodontics. The aim of the present study was to assess the effects of Er:YAG laser irradiation on root canals in vitro.
STUDY DESIGN/MATERIALS AND METHODS: For this purpose, 220 extracted human teeth were endodontically processed and subsequently irradiated at different settings using an Er:YAG laser imitating in vivo irradiation procedures. The teeth were then subdivided into three groups and subjected to bacteriological evaluations, scanning electron microscopy, and temperature measurements.
The bacteriological evaluation revealed a decisive bactericidal effect of the Er:YAG laser in the root canal. The bactericidal effect was dependent on the applied output power and specific for the different species of bacteria investigated. Scanning electron microscopy showed discrete removal of dentine from the root canal walls. The temperature rise during irradiation was moderate when standardized power settings were used.
The investigations indicate that the Er:YAG laser is a suitable tool for the elimination of bacteria in root canals under in vitro conditions.
直到最近,铒激光应用的主要领域还是在窝洞预备范围内去除牙齿硬组织。如今,有了几种新的传输系统,使得铒激光可应用于牙髓病学。本研究的目的是评估铒激光照射对根管的体外效应。
研究设计/材料与方法:为此,选取220颗拔除的人牙进行牙髓治疗,随后使用模仿体内照射程序的铒激光在不同参数设置下进行照射。然后将牙齿分为三组,进行细菌学评估、扫描电子显微镜检查和温度测量。
细菌学评估显示铒激光在根管内有决定性的杀菌作用。杀菌效果取决于所施加的输出功率,且对所研究的不同细菌种类具有特异性。扫描电子显微镜显示根管壁上的牙本质有离散性去除。使用标准化功率设置时,照射期间温度升高适中。
研究表明,铒激光是体外条件下消除根管内细菌的合适工具。