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Thermal increment due to ErCr: YSGG and CO2 laser irradiation of different implant surfaces. A pilot study

机译:由于ErCr:YSGG和CO2激光照射不同植入物表面而产生的热增量。初步研究

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摘要

Objective: An evaluation and comparison is made of the thermal increment at different implant surfaces during irradiation with CO2 and ErCr:YSGG lasers. Study design: Five threaded and impacted implants with four types of surfaces were inserted in an adult pig rib: two implants with a hydroxyapatite surface (HA)(impacted and threaded, respectively), a machined titanium surface implant (TI mach), a titanium plasma spray surface implant (TPS), and a sandblasted, acid-etched surface implant (SBAE). A 0.5-mm diameter bone defect was made in the implant apical zone, and a type-K thermocouple (Termopar)® was placed in contact with the implant. The implants were irradiated in the coronal zone of each implant with a CO2 (4 W continuous mode) and an ErCr:YSGG laser (1.5 W, pulsed mode) first without and then with refrigeration. The temperature variations at the implant apical surface were recorded. Results: An apical temperature increase was recorded in all cases during CO2 and ErCr:YSGG laser irradiation without refrigeration. However, when the ErCr:YSGG was used with a water spray, a decrease in temperature was observed in all implants. The acid-etched and sandblasted surfaces were those most affected by the thermal changes. Conclusions: The ErCr:YSGG laser with a water spray applied to the sealing cap or coronal zone of the implants does not generate thermal increments in the apical surface capable of adversely affecting osseointegration and the integrity of the peri-implant bone tissue
机译:目的:评估和比较在CO2和ErCr:YSGG激光照射下不同植入物表面的热增量。研究设计:将五种具有四种类型表面的带螺纹且受冲击的植入物插入成年猪的肋骨:两种具有羟基磷灰石表面(HA)(分别受压和带螺纹)的植入物,机加工的钛表面植入物(TI mach),钛等离子喷涂表面植入物(TPS)和喷砂,酸蚀表面植入物(SBAE)。在植入物的顶端区域形成直径为0.5毫米的骨缺损,并放置K型热电偶(Termopar)®与植入物接触。首先在没有制冷的情况下,然后在制冷条件下,用CO2(4 W连续模式)和ErCr:YSGG激光(1.5 W,脉冲模式)在每个植入物的冠状区域中对植入物进行辐照。记录植入物顶表面的温度变化。结果:在没有制冷的情况下,在二氧化碳和ErCr:YSGG激光辐照的所有情况下,均记录到顶端温度升高。但是,当ErCr:YSGG与喷水一起使用时,在所有植入物中均观察到温度降低。酸蚀和喷砂表面受热变化影响最大。结论:将ErCr:YSGG激光喷水到植入物的密封帽或冠状区域不会在根尖表面产生热增量,从而不会不利地影响骨整合和植入物周围骨组织的完整性

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