首页> 外文期刊>Implant dentistry >Thermal Testing of Titanium Implants and the Surrounding Ex-Vivo Tissue Irradiated With 9.3um CO2 Laser.
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Thermal Testing of Titanium Implants and the Surrounding Ex-Vivo Tissue Irradiated With 9.3um CO2 Laser.

机译:钛植入物的热试验和用9.3um CO2激光照射的围绕前体内组织。

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摘要

To measure the temperature rise and surface damage of titanium dental implants and the surrounding tissue in a pig jaw during 9.3-μm carbon dioxide (CO2) laser irradiation at various durations of time. Thermal analysis tests were performed on 12 implants with the same surface. Twelve implants mounted alone or in pig jaws were laser-irradiated with a 9.3-μm CO2 laser using 3 different power settings. The temperature of the implant body and the proximal tissues was measured with a J-Type Thermocouple after being laser-irradiated with 3 different power setting for 30, 60 seconds, and 2 minutes. Scanning electron microscope (SEM) and digital microscope images were also taken of the all the implants before and after laser irradiation to detect the presence or absence of surface damage. Temperature analysis showed that in all cases the implant and the proximal tissue temperatures remained around the start temperatures of the implant and tissues with fluctuations of ±3°C but never reached the upper threshold of 44°C, the temperature at which thermal injury to bone has been reported. Digital and SEM images that were taken of the implants showed an absence of surface damage at the cutting speed of 20% (0.7 W); however, cutting speeds of 30% to 100% (1.0-4.2 W) did yield surface damage. Laser irradiation of titanium implant surfaces using a 9.3-μm carbon dioxide laser with an average power of 0.7 W showed no increase in thermal temperature of the implant body and tissue temperatures as well as no evidence of implant surface damage.
机译:在9.3μm二氧化碳(CO2)激光照射期间测量猪牙齿植入物和周围组织的钛牙种植体的温度和表面损伤在各种时间的时间。在具有相同表面的12种植入物上进行热分析试验。使用3个不同的电源设置,用9.3μm的CO2激光激光照射单独或猪钳中的12个植入物。在激光照射300,60秒和2分钟后,用J型热电偶测量植入体和近端组织的温度。扫描电子显微镜(SEM)和数字显微镜图像也拍摄了激光照射前后的所有植入物,以检测表面损伤的存在或不存在。温度分析表明,在所有情况下,植入物和近端组织温度仍然围绕植入物和组织的起始温度,±3°C的波动,但从未达到44°C的上阈值,该温度是骨热损伤的温度已经被报告了。采用植入物的数字和SEM图像显示出在20%(0.7W)的切割速度下存在表面损伤;然而,切割速度为30%至100%(1.0-4.2 W)的屈服表面损伤。使用9.3μm二氧化碳激光器的激光照射钛植入表面的平均功率为0.7W,显示出植入物体的热温度和组织温度的热温度,也没有植入表面损坏的证据。

著录项

  • 来源
    《Implant dentistry》 |2019年第5期|共9页
  • 作者单位

    Assistant Professor Department of Periodontics Stony Brook Dental School Stony Brook NY;

    Senior R&

    D Engineer Convergent Dental Needham MA;

    Vice President of Research and Development Convergent Dental Needham MA;

    Clinical Adjunct Professor and Director of Clinical Research Ashman Department of Periodontology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

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