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使用高脉冲重复率的二氧化碳激光消融后的牙本质粘结强度。

Dentin bond strength after ablation using a CO(2) laser operating at high pulse repetition rates.

作者信息

Hedayatollahnajafi Saba, Staninec Michal, Watanabe Larry, Lee Chulsung, Fried Daniel

机构信息

University of California, San Francisco, San Francisco, CA94143-0758.

出版信息

Proc SPIE Int Soc Opt Eng. 2009 Feb 18;7162:71620F. doi: 10.1117/12.816862.

Abstract

Pulsed CO(2) lasers show great promise for the rapid and efficient ablation of dental hard tissues. Our objective was to demonstrate that CO(2) lasers operated at high repetition rates can be used for the rapid removal of dentin without excessive thermal damage and without compromising adhesion to restorative materials. Human dentin samples (3×3mm(2)) were rapidly ablated with a pulsed CO(2) laser operating at a wavelength of 9.3-μm, pulse repetition rate of 300-Hz and an irradiation intensity of 18-J/cm(2). The bond strength to composite was determined by the modified single plane shear test. There were 8 test groups each containing 10 blocks: negative control (non-irradiated non-etched), positive control (non-irradiated acid-etched), and six laser treated groups (three etched and three non-etched sets). The first and second etched and non-etched sets were ablated at a speed of 25 mm/sec and 50 mm/sec with water, respectively. The third set was also ablated at 50 mm/sec without application of water during laser irradiation. Minimal thermal damage was observed on the dentin surfaces for which water cooling was applied. Bond strengths exceeded 20 MPa for laser treated surfaces that were acid-etched after ablation (25-mm/sec: 29.9-MPa, 50-mm/sec: 21.3-MPa). The water-cooled etched laser groups all produced significantly stronger bonds than the negative control (p<0.001) and a lower bond strength than the positive control (p<0.05). These measurements demonstrate that dentin surfaces can be rapidly ablated by a CO(2) lasers with minimal peripheral thermal damage. Additional studies are needed to determine if a lower bond strength than the acid-etched control samples is clinically significant where durability of these bonded restoration supersedes high bond strength.

摘要

脉冲二氧化碳激光在快速高效地消融牙齿硬组织方面显示出巨大的潜力。我们的目标是证明以高重复频率运行的二氧化碳激光可用于快速去除牙本质,而不会造成过度的热损伤,也不会影响与修复材料的粘结。用人牙本质样本(3×3毫米²),使用波长为9.3微米、脉冲重复频率为300赫兹、辐照强度为18焦/厘米²的脉冲二氧化碳激光进行快速消融。通过改良的单平面剪切试验测定与复合材料的粘结强度。有8个试验组,每组包含10个样本块:阴性对照(未辐照未酸蚀)、阳性对照(未辐照酸蚀)以及6个激光处理组(3个酸蚀组和3个未酸蚀组)。第一组和第二组酸蚀和未酸蚀样本块分别在有水冷却的情况下以25毫米/秒和50毫米/秒的速度进行消融。第三组在激光辐照期间不加水的情况下也以50毫米/秒的速度进行消融。在施加水冷的牙本质表面观察到最小的热损伤。对于消融后进行酸蚀的激光处理表面,粘结强度超过20兆帕(25毫米/秒:29.9兆帕,50毫米/秒:21.3兆帕)。水冷酸蚀激光组产生的粘结力均明显强于阴性对照(p<0.001),但粘结强度低于阳性对照(p<0.05)。这些测量结果表明,二氧化碳激光可以快速消融牙本质表面,同时使周边热损伤最小化。需要进行更多研究来确定,在这些粘结修复体的耐久性比高粘结强度更重要的临床情况下,比酸蚀对照样本更低的粘结强度是否具有临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d02/3166242/a796fd2ce87a/nihms320541f1.jpg

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