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特定参数飞秒激光制备离体牙釉质窝洞对髓腔温度的影响 被引量:2
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作者 孙玉春 anatoliy vorobyev +2 位作者 李虹 Chunlei Guo 王勇 《北京大学学报(医学版)》 CAS CSCD 北大核心 2013年第2期286-290,共5页
目的:用特定参数飞秒激光在离体牙釉质层制备窝洞,实时监测髓腔温度(intrapulpal temperature,IPT)变化,并初步评价风冷的效果。方法:人类离体牙(前磨牙、磨牙)截根,暴露髓腔。髓腔内填入铜粉,将热电偶置于髓腔中央,将铜粉压实。用绝热... 目的:用特定参数飞秒激光在离体牙釉质层制备窝洞,实时监测髓腔温度(intrapulpal temperature,IPT)变化,并初步评价风冷的效果。方法:人类离体牙(前磨牙、磨牙)截根,暴露髓腔。髓腔内填入铜粉,将热电偶置于髓腔中央,将铜粉压实。用绝热胶带封闭髓室底部。室温下,用飞秒激光在离体牙颊面釉质层逐行扫描切削,以0.4 mm/s的平均速度制备边长为2.25 mm的正方形窝洞,用热电偶电子测温仪实时监测髓腔温度变化,温度升至平稳状态后加入风冷。结果:髓腔温度升高量为ΔT,前磨牙风冷前最大ΔT=12.3℃,风冷后温度下降,ΔT=3.0℃。磨牙风冷前最大ΔT=1.8℃,风冷后ΔT=-0.1℃。结论:用特定参数飞秒激光在离体牙齿釉质表面制备平均深度约为250μm窝洞时,牙髓腔温度会随着切削深度的增加而升高,风冷可有效控制温度升高程度。 展开更多
关键词 牙窝洞制备 牙髓腔 温度 飞秒激光 牙釉质
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飞秒激光切削牙齿硬组织表面粗糙度和显微形貌观察 被引量:9
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作者 孙玉春 anatoliy vorobyev +2 位作者 刘晶 Chunlei Guo 吕培军 《中华口腔医学杂志》 CAS CSCD 北大核心 2012年第8期486-489,共4页
目的初步建立飞秒激光数控切削牙齿硬组织模拟实验平台并观察显微形貌,以期为飞秒激光的临床应用提供依据。方法用人离体第三磨牙制备牙釉质和牙本质平面样本各1个;通用运动控制器控制样本在与激光入射方向垂直的焦点平面内做矩形波... 目的初步建立飞秒激光数控切削牙齿硬组织模拟实验平台并观察显微形貌,以期为飞秒激光的临床应用提供依据。方法用人离体第三磨牙制备牙釉质和牙本质平面样本各1个;通用运动控制器控制样本在与激光入射方向垂直的焦点平面内做矩形波轨迹运动。激光扫描共聚焦显微镜测量切削面粗糙度,扫描电镜观察显微形貌。结果用实验建立的飞秒激光数控切削平台制备牙釉质和牙本质正方形窝洞各1个。窝洞边界清晰、底平壁直。牙釉质激光扫描线内底部粗糙度7.173μm,侧壁粗糙度2.675μm;窝洞底壁粗糙度13.667μm,侧壁粗糙度33.927μm。牙本质窝洞底壁粗糙度51.182μm,侧壁粗糙度25.629μm。扫描电镜下牙釉质未见微裂隙及碳化,牙本质出现碳化、少量裂隙和结晶颗粒。结论飞秒激光数控切削能实现精确牙体切削,切削面侧壁粗糙度小于底面,可满足临床修复要求。但应针对不同切削对象设置适宜的飞秒激光能量密度,其过高时可造成组织损伤。 展开更多
关键词 激光 牙釉质 牙本质 显微镜检查 电子 扫描
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Direct visualization of the complete evolution of femtosecond laser-induced surface structural dynamics of metals 被引量:1
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作者 Ranran Fang anatoliy vorobyev Chunlei Guo 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期58-64,共7页
Despite extensive studies of femtosecond laser-material interactions,even the simplest morphological responses following femtosecond pulse irradiation have not been fully resolved.Past studies have revealed only parti... Despite extensive studies of femtosecond laser-material interactions,even the simplest morphological responses following femtosecond pulse irradiation have not been fully resolved.Past studies have revealed only partial dynamics.Here we develop a zerobackground and high-contrast scattered-light-based optical imaging technique through which we capture,for the first time,the complete temporal and spatial evolution of the femtosecond laser-induced morphological surface structural dynamics of metals from start to finish,that is,from the initial transient surface fluctuations,through melting and ablation,to the end of resolidification.We find that transient surface structures first appear at a delay time on the order of 100 ps,which is attributed to ablation driven by pressure relaxation in the surface layer.The formation dynamics of the surface structures at different length scales are individually resolved,and the sequence of their appearance changes with laser fluence is found.Cooling and complete resolidification,observed here for the first time,are shown to occur more slowly than previously predicted by two orders of magnitude.We examine and identify the mechanisms driving each of these dynamic steps.The visualization and control of morphological surface structural dynamics not only are of fundamental importance for understanding femtosecond laser-induced material responses but also pave the way for the design of new material functionalities through surface structuring. 展开更多
关键词 ablation femtosecond laser surface nano/microstructures ultrafast dynamics ultrafast imaging
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