Nair P N Ramachandran, Baltensperger Marc M, Luder Hans-Ulrich, Eyrich Gerold K H
Department of Oral Structural Biology, Center of Dental and Oral Medicine, University of Zurich, Switzerland.
Lasers Surg Med. 2003;32(3):203-9. doi: 10.1002/lsm.10155.
Maintenance of pulpal health is a critical prerequisite for successful application of light amplification by stimulated emission of radiations (lasers) in the hard tissue management of vital teeth. The purpose of this study was to investigate the short- and long-term pulpal effects to cavity-preparations in healthy human teeth using erbium-doped:yttrium, aluminum, and garnet (Er:YAG) laser.
A total of seven healthy third molars that were to be removed due to space-problem were used. Following the laser excavation, the cavities in dentine were closed temporarily and the teeth were extracted after 7 days (n = 5) and 3 months (n = 2) post-operation. The specimens were fixed, decalcified, subdivided, and processed for light and transmission electron microscopy.
In the short-term group, four of the five laser-drilled teeth did not reveal any pathological changes in the pulp-dentine complex. One tooth showed mild disruption of odontoblasts (OB) and vascular dilatation subjacent to the deepest point of the cavity-preparation with a remaining dentine thickness (RDT) of less than 80 microm. The two teeth under long-term observation revealed distinct apposition of tertiary dentine (TD), lined predominantly with cuboidal cells on its pulpal aspect.
These results would allow a conclusion to be drawn that the Er:YAG laser under investigation is a pulp preserving hard-tissue drilling tool when used with the specific energy settings and emitting radiation at a wavelength of 2.94 microm.
牙髓健康的维持是在活髓牙硬组织处理中成功应用受激辐射光放大(激光)的关键前提。本研究的目的是使用掺铒钇铝石榴石(Er:YAG)激光,研究健康人牙齿中窝洞制备对牙髓的短期和长期影响。
总共使用了7颗因空间问题而需要拔除的健康第三磨牙。激光窝洞预备后,牙本质中的窝洞暂时封闭,术后7天(n = 5)和3个月(n = 2)后拔牙。标本固定、脱钙、分割,并进行光镜和透射电镜检查。
在短期组中,5颗激光预备窝洞的牙齿中有4颗在牙髓-牙本质复合体中未发现任何病理变化。1颗牙齿在窝洞预备最深点下方显示成牙本质细胞(OB)轻度破坏和血管扩张,剩余牙本质厚度(RDT)小于80微米。长期观察的2颗牙齿显示有明显的第三期牙本质(TD)形成,其牙髓侧主要衬有立方体细胞。
这些结果可以得出结论,在所研究的特定能量设置和波长为2.94微米的辐射条件下使用时,Er:YAG激光是一种能保护牙髓的硬组织钻孔工具。