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首页> 外文期刊>Photomedicine and laser surgery >Effect of dentin hardness on ablation rate with Er:YAG laser.
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Effect of dentin hardness on ablation rate with Er:YAG laser.

机译:牙本质硬度对Er:YAG激光烧蚀率的影响。

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OBJECTIVE: This study used artificially demineralized bovine dentin to ascertain the effect of hardness of demineralized dentin on ablation rate with the Er:YAG laser. BACKGROUND DATA: Before restoration of carious teeth, it is necessary to ablate any infected dentin that cannot be remineralized due to softening by the invading caries. A correlation has been suggested between the ablation efficiency of the Er:YAG laser and the progression of caries in dentin. To the best of our knowledge, no studies have investigated the relationship between degree of demineralization by dentinal caries and ablation rate with the Er:YAG laser. MATERIALS AND METHODS: Bovine mandibular anterior tooth roots were used as dentin samples. Each sample was soaked in a demineralizing solution (2 M lactic acid, pH 4.0) for 3 d to obtain demineralized dentin (DD) samples. Another group of samples were prepared without demineralization as a sound dentin (SD) group for comparison. After determining the Knoop hardness number (KHN) of each sample, the dentin surface was ablated with an Er:YAG laser. Tip output and pulse rate were set at 50 mJ and 20 pulses per second (pps), respectively, and the water spray was set at 3.5 mL/min. Ablation width, depth, and volume were measured following irradiation. RESULTS: In the DD group, dentin hardness was 10.4 +/- 1.6 KHN at 100 microm from the surface. In the sound dentin group, Knoop hardness was 51.0 +/- 1.6 KHN cross-sectionally throughout. No differences were observed from the surface to a depth of 2000 microm. In the DD group, dentin ablation volume at the superficial demineralized layer was 2888 +/- 272 x 10(4) microm. In the SD group, dentin ablation volume was 1298 +/- 219 microm(3). The relationship between ablation volume and Knoop hardness was defined as Y = -40.699x + 3350, revealing a marked negative correlation. CONCLUSION: The results demonstrate that the ablation volume for demineralized dentin was greater than that for sound dentin. The results suggest that the Er:YAG laser is capable of ablating infected dentin without damaging sound dentin by adjustment of tip output and pulse rate.
机译:目的:本研究使用人工脱钙的牛牙本质,以确定用Er:YAG激光对脱矿的牙本质的硬度对消融率的影响。背景数据:在龋齿修复之前,必须消融由于感染的龋齿软化而无法再矿化的任何感染的牙本质。有人提出了Er:YAG激光的消融效率与龋齿龋病进展之间的相关性。据我们所知,还没有研究调查用Er:YAG激光治疗的龋齿脱矿度与消融率之间的关系。材料与方法:以牛下颌前牙根为牙本质样品。将每个样品浸泡在脱盐溶液(2 M乳酸,pH 4.0)中3 d,以获得脱盐的牙本质(DD)样品。制备另一组没有脱矿质的样品作为声音牙本质(SD)组进行比较。在确定每个样品的努氏硬度值(KHN)后,用Er:YAG激光烧蚀牙本质表面。尖端输出和脉冲速率分别设置为50 mJ和20脉冲每秒(pps),喷水设置为3.5 mL / min。照射后测量消融宽度,深度和体积。结果:在DD组中,在距表面100微米处的牙本质硬度为10.4 +/- 1.6 KHN。在有声牙本质组中,努氏硬度整个横截面为51.0 +/- 1.6 KHN。从表面到2000微米的深度均未观察到差异。在DD组中,表面脱矿质层的牙本质消融体积为2888 +/- 272 x 10(4)微米。在SD组中,牙本质消融体积为1298 +/- 219 microm(3)。消融体积与努氏硬度之间的关系定义为Y = -40.699x + 3350,显示出显着的负相关性。结论:结果表明,脱矿质牙本质的消融体积大于声固性牙本质的消融体积。结果表明,Er:YAG激光能够通过调节针尖输出和脉冲频率来消融感染的牙本质而不会损坏声质。

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