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Laser Spot Size and beam Profile Studies for Tissue Welding Applications

机译:用于组织焊接应用的激光光斑尺寸和光束轮廓研究

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We evaluated the effect of changes in laser spot size and beam profile on the thermal denaturation zone produced during laser skin welding. Our objective was to limit heating of the tissue surface, while creating enough thermal denaturation in the deeper layers of the dermis to produce full-thickness welds. Two-cm-long, full-thickness incisions were made on the backs of guinea pigs, in vivo. India ink was used as an absorber. Continuous-wave, 1.06-μm, Nd:YAG laser radiation was scanned over the incisions, producing ~100 ms pulses. Cooling times of 10.0 s between scans were used. Laser spot diameters of 1, 2, 4, and 6 mm were studied, with powers of 1, 4, 16, and 36 W, respectively. The irradiance remained constant at 127 W/cm~2. 1, 2 , and 4 mm diameter spots produced thermal denaturation to a depth of 570 ± 100 μm, 970 ± 210 μm, and 1470 ± 190 μm, respectively. The 6-mm-diameter spot produced full-thickness welds (1900 μm), but also burns due to the high incident power. Monte Carlo simulations were also conducted, varying the laser spot diameter and beam profile. The simulations verified that an increase in laser spot diameter results in an increase in the penetration depth of radiation into the tissue.
机译:我们评估了激光光斑尺寸和光束轮廓变化对激光皮肤焊接期间产生的热变性区的影响。我们的目的是限制组织表面的加热,同时在真皮的更深层中产生足够的热变性,以产生全厚焊缝。在豚鼠的背面,在体内制作了两厘米长的全厚切口。印度墨水被用作吸收器。连续波,1.06-μm,ND:在切口上扫描了YAG激光辐射,产生〜100 ms脉冲。使用扫描之间的10.0秒的冷却时间。研究了1,2,4和6mm的激光点直径,分别为1,4,16和36W的功率。在127W / cm〜2时,辐照度保持恒定。图1,2和4 mm的直径斑点分别产生热变性至570±100μm,970±210μm和1470±190μm的深度。 6毫米直径的点产生全厚度焊缝(1900μm),但由于发生的高电平电源也燃烧。还进行了蒙特卡罗模拟,改变激光光斑直径和光束轮廓。仿真验证了激光光斑直径的增加导致辐射渗透深度的增加。

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