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Crater Morphology and Thermal Injury of Bovine Shank Bone Ablated by Pulse CO2 Laser with Different Defocusing Conditions

机译:脉冲CO2激光用不同散焦条件烧蚀牛柄骨的火山口形态和热损伤

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To evaluate the zone of collateral thermal damage and crater morphology for evidence of defocus irradiation condition's effect on the ablation of bovine shank bone with pulse CO2 laser. Bovine shank bone was divided into two groups, each group was put on a PC-controlled motorized linear drive stage which was located on the pre- and post-focus plane with a beam spot size of about 510 mum respectively and moved repeatedly through the focused beam. The wavelength of pulse CO2 laser was 10.64 mum, pulse repetition rate was 60 Hz. The moving speed of the stage was 20 mm/s, scan times was 6. the zone of thermal damage and crater morphology produced by pulse CO2 laser ablation were examined by light microscopy following standard histological processing. The results demonstrate that defocus irradiation condition has an important effect on ablation crater profile, crater morphology and the zone of collateral thermal damage. By selecting proper radiant exposure and focusing the beam spot not above but slightly beneath the bone surface, narrower but deeper cut with minimum collateral thermal injury can be obtained.
机译:评估散焦辐射条件验证对脉冲CO 2 激光器释放牛柄骨烧蚀效果的抵押热损伤和火山口形态。牛胫骨被分成两个组,每个组被投入其上位于所述前和后焦平面与分别为约510妈妈的束斑尺寸,并通过聚焦反复移动的PC控制的电动线性驱动器级光束。脉冲CO 2 激光的波长为10.64米,脉冲重复率为60 Hz。阶段的移动速度为20mm / s,扫描时间为6.通过光学组织学加工后通过光学显微镜检查脉冲CO 2 激光烧蚀产生的热损伤和火山口形态区域。结果表明,散焦辐射条件对消融火山口曲线,火山口形态和侧支热损伤区具有重要作用。通过选择适当的辐射曝光并将光束点聚焦在骨表面上略微下方,可以获得更窄但具有最小抵消热损伤的更深切割。

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