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首页> 外文期刊>Lasers in surgery and medicine >Viability of human septal cartilage after 1.45 microm diode laser irradiation.
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Viability of human septal cartilage after 1.45 microm diode laser irradiation.

机译:1.45后人类中隔软骨的可行性microm二极管激光辐照。

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BACKGROUND AND OBJECTIVES: Chondrocyte viability following laser irradiation and reshaping has not been established for human nasal septal cartilage. Knowledge of the relationship between thermal injury and laser dosimetry is needed in order to optimize septal laser cartilage reshaping. The objective of this study was to determine the depth and width of thermal injury in human septal cartilage following laser irradiation. STUDY DESIGN/MATERIALS AND METHODS: Excess fresh nasal septal cartilage sections from rhinoplasty or septoplasty operations were irradiated using a 1.45 microm diode laser 1.25-3.6 W (2.8 mm spot diameter) with 1 second fixed exposure time, and then at exposure times of 1-4 seconds for a fixed power of 1.25 W. An infrared camera recorded surface temperature profiles during irradiation, and the temperature data were incorporated into a rate process model to numerically estimate thermal damage. Calcein AM and ethidium homodimer-1 fluorescent dyes combined with confocal laser microscopy (CLM) were used to measure thermal damage. RESULTS: CLM demonstrated clear demarcation between dead and living cells following irradiation. The extent of non-viable chondrocyte distributions increased with power and exposure time. The maximum depths of injury were 1,012 and 1,372 microm after 3.6 W 1 second and 1.25 W 4 seconds irradiation respectively. The damage predictions made by the rate process model underestimated thermal injury when compared with CLM measurements. CONCLUSIONS: The assay system identified regions of non-viable chondrocytes in human septal cartilage and defined how thermal injury varies with dosimetry when using a 1.45 microm diode laser.
机译:背景和目的:软骨细胞的生存能力在激光辐照和重塑建立了对人类鼻间隔软骨。热损伤和激光剂量测定法是必要的为了优化中隔软骨激光重塑。确定热损伤的深度和宽度在人类中隔软骨后激光辐照。多余的鼻中隔软骨部分新鲜鼻整形术或鼻中隔成形术操作使用1.45 microm二极管激光辐照光斑直径1.25 - -3.6 W(2.8毫米),1秒固定曝光时间,然后在曝光时间1 - 4秒为一个固定的功率为1.25 W。红外摄像机记录表面温度概要文件在照射,温度数据整合到流程模型数值估计热损伤。我和ethidium homodimer-1荧光染料结合激光共焦显微镜(CLM)被用来测量热损伤。证明了死亡,分界清楚辐照后活细胞。“软骨细胞分布增加权力和曝光时间。受伤的是1012年和1372年后microm 3.6 W1秒和1.25 W 4秒辐照分别。流程模型低估了热损伤相比,CLM测量。分析系统标识的区域不能存活在人类中隔软骨和软骨细胞定义如何热损伤随剂量测定法当使用1.45 microm二极管激光器。

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