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纹身的激光治疗:基本原理

Laser Treatment of Tattoos: Basic Principles.

作者信息

Bäumler Wolfgang

机构信息

Department of Dermatology, University of Regensburg, Regensburg, Germany.

出版信息

Curr Probl Dermatol. 2017;52:94-104. doi: 10.1159/000450809. Epub 2017 Mar 10.

Abstract

Tattooing has become very popular worldwide during the past decades, and millions of people have one or many tattoos at different anatomical sites. The color of tattoos is mainly black, followed by red, green, blue, and other colors. A part of the tattooed people regret tattooing or have permanent problems with tattoos and therefore seek for tattoo removal. Tattoos consist of solid pigment particles in the skin. Thus, tattoo removal requires fragmentation of these permanently incorporated particles. The gold standard of tattoo removal is laser therapy. Short light pulses at high intensities are applied to the tattooed skin surface. The laser light penetrates the skin and is selectively absorbed in the pigment particles. The absorbed laser light leads to heat-up and fragmentation of the particles. Due to the complex chemistry of the various tattoo pigments, the efficacy of this fragmentation process is frequently unpredictable. Due to the short and intense pulses, nonlinear effects of light and thermal properties of tattoo particles may play a role, and the assumptions of selective photothermolysis may not reflect the real process of tattoo particle fragmentation as a whole. In case fragmentation occurs, the concentration of pigment particles in the skin decreases, yielding a fading of the tattoo color in the skin. Laser therapy is most effective in black tattoos and less effective for colored tattoos. The rate of side effects is low due to the selectivity of the treatment. Laser light may change the chemistry of the tattoo pigments and hence provoke toxic decomposition products.

摘要

在过去几十年里,纹身已在全球范围内变得非常流行,数以百万计的人在不同身体部位有一处或多处纹身。纹身的颜色主要是黑色,其次是红色、绿色、蓝色及其他颜色。一部分纹身者会后悔纹身或因纹身存在永久性问题,因此寻求去除纹身。纹身是由皮肤中的固态色素颗粒构成。因此,去除纹身需要将这些永久嵌入的颗粒破碎。去除纹身的金标准是激光治疗。高强度的短光脉冲被应用于纹身皮肤表面。激光穿透皮肤并被色素颗粒选择性吸收。被吸收的激光导致颗粒升温并破碎。由于各种纹身色素的化学性质复杂,这种破碎过程的效果常常不可预测。由于脉冲短且强度高,光的非线性效应和纹身颗粒的热性质可能起作用,并且选择性光热解的假设可能无法整体反映纹身颗粒破碎的实际过程。如果发生破碎,皮肤中色素颗粒的浓度会降低,导致皮肤中纹身颜色变淡。激光治疗对黑色纹身最有效,对彩色纹身效果较差。由于治疗的选择性,副作用发生率较低。激光可能会改变纹身色素的化学性质,从而产生有毒的分解产物。

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