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专为根管消毒设计的二氧化碳激光微探针诱导的组织学变化:体内研究。

Histological changes induced by CO2 laser microprobe specially designed for root canal sterilization: in vivo study.

作者信息

Kesler G, Koren R, Kesler A, Hay N, Gal R

机构信息

Dental Clinic Center, Hasharon Hospital, Petah Tikva, Israel.

出版信息

J Clin Laser Med Surg. 1998 Oct;16(5):263-7. doi: 10.1089/clm.1998.16.263.

Abstract

OBJECTIVE

Until now, no suitable delivery fiber has existed for CO2 laser endodontic radiation in the apical region, where it is most difficult to eliminate the pulp tissue using conventional methods. To overcome this problem, we have designed a microprobe that reaches closer to the apex, distributing the energy density to a smaller area of the root canal and thus favorably increasing the thermal effects.

METHODS

A CO2 laser microprobe coupled onto a special hand piece was attached to the delivery fiber of a Sharplan 15-F CO2 laser. The study was conducted on 30 vital maxillary or mandibulary, central, lateral, or premolar teeth destined for extraction due to periodontal problems. Twenty were experimentally treated with pulsed CO2 laser delivered by this newly developed fiber after conventional root canal preparation. Temperature measured at three points on the root surface during laser treatment did not exceed 38 degrees C. Ten teeth represented the control group, in which only root canal preparation was performed in the conventional method.

RESULTS

Histological examination of the laser-treated teeth showed coagulation necrosis and vacuolization of the remaining pulp tissue in the root canal periphery. Primary and secondary dentin appeared normal in all cases treated with 15-F CO2 laser. Gram stain and bacteriologic examination revealed complete sterilization. These results demonstrate the unique capabilities of this special microprobe in sterilization of the root canal, with no thermal damage to the surrounding tissue.

CONCLUSIONS

The combination of classical root canal preparation with CO2 laser irradiation using this special microprobe before closing the canal can drastically change the quality of root canal fillings.

摘要

目的

迄今为止,在根尖区域一直没有适用于二氧化碳激光牙髓病治疗辐射的输送光纤,而在该区域使用传统方法最难清除牙髓组织。为克服这一问题,我们设计了一种微探头,它能更接近根尖,将能量密度分布到根管的较小区域,从而有利地增强热效应。

方法

将连接到特殊手持件上的二氧化碳激光微探头连接到Sharplan 15-F二氧化碳激光的输送光纤上。该研究对30颗因牙周问题而注定要拔除的上颌或下颌活的中切牙、侧切牙或前磨牙进行。在常规根管预备后,用这种新开发的光纤输送的脉冲二氧化碳激光对其中20颗牙进行实验性治疗。激光治疗期间在牙根表面三个点测得的温度不超过38摄氏度。10颗牙作为对照组,仅用传统方法进行根管预备。

结果

对激光治疗的牙齿进行组织学检查显示,根管周边剩余牙髓组织出现凝固性坏死和空泡化。在所有用15-F二氧化碳激光治疗的病例中,原发性和继发性牙本质看起来正常。革兰氏染色和细菌学检查显示完全灭菌。这些结果证明了这种特殊微探头在根管灭菌方面的独特能力,且对周围组织无热损伤。

结论

在封闭根管之前,将经典的根管预备与使用这种特殊微探头进行二氧化碳激光照射相结合,可显著改变根管充填的质量。

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