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Tattoo removal with the alexandrite laser: a clinical and histologic study

机译:用翠绿宝石激光去除纹身:临床和组织学研究

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Abstract: The incident of tattoos in the United States is estimated to be in the range of 9 to 11% of the adult population. Various studies have shown that of these persons having tattoos, as many as 50 to 80% regret having gotten the tattoo and may desire tattoo removal. Previous treatment modalities have all used methods which require tissue destruction in order to remove the tattoo ink. The primary problems with use of these modalities has been the unpredictability of scarring. Also, residual tattoo pigment remaining after completion of the treatment process has been a problem. In response to these problems, the Q-switched lasers have been developed which target the tattoo pigments specifically rather than the tissue containing the tattoo pigment. The alexandrite laser (made by Candela Laser Corporation) has a wavelength of 755 nm and a pulse width of 100 nsec plus or minus 10 nsec. Reflectance studies have indicated that black, blue and green ink should absorb this wavelength relatively well, while red ink would not be expected to absorb this wavelength well. The mechanism of action of this laser is selective absorption of the laser energy by the tattoo pigment resulting in fragmentation of the pigment and then engulfment by tissue macrophages which remove the fragmented tattoo pigment. Preliminary studies using a Yucatan mini pig confirmed these expectations with black ink being easier to remove than blue and green, and red ink being minimally responsive. Higher fluences were more effective. !0
机译:摘要:据估计,在美国纹身事件的发生率在成年人口中占9%至11%。各种研究表明,在这些有纹身的人中,多达50%至80%的人后悔获得了纹身并且可能希望去除纹身。先前的治疗方式已经使用了所有需要破坏组织以便去除纹身墨水的方法。使用这些方式的主要问题是疤痕的不可预测性。同样,在完成处理过程之后残留的残留纹身颜料也是一个问题。针对这些问题,已经开发了Q开关激光器,其专门针对纹身颜料而不是包含纹身颜料的组织。翠绿宝石激光器(由Candela Laser Corporation制造)具有755 nm的波长和100纳秒正负10纳秒的脉冲宽度。反射率研究表明,黑色,蓝色和绿色墨水应该相对较好地吸收该波长,而红色墨水则不能很好地吸收该波长。该激光的作用机理是纹身颜料选择性吸收激光能量,导致颜料破碎,然后被组织巨噬细胞吞噬,从而去除破碎的纹身颜料。使用尤加坦小型猪的初步研究证实了这些期望,其中黑色墨水比蓝色和绿色更容易清除,红色墨水的响应速度最小。高通量更有效。 !0

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