Freedman Joshua R, Kaufman Joely, Metelitsa Andrea I, Green Jeremy B
University of Miami Leonard M Miller School of Medicine, Department of Dermatology and Cutaneous Surgery, Miami, Florida, USA.
University of Miami Leonard M Miller School of Medicine, Department of Dermatology and Cutaneous Surgery, Miami, Florida, USA. Dr Brandt Dermatology Associates, Coral Gables, Florida, USA.
Semin Cutan Med Surg. 2014 Dec;33(4):164-8. doi: 10.12788/j.sder.0117.
Selective photothermolysis, first discussed in the context of targeted microsurgery in 1983, proposed that the optimal parameters for specific thermal damage rely critically on the duration over which energy is delivered to the tissue. At that time, nonspecific thermal damage had been an intrinsic limitation of all commercially available lasers, despite efforts to mitigate this by a variety of compensatory cooling mechanisms. Fifteen years later, experimental picosecond lasers were first reported in the dermatological literature to demonstrate greater efficacy over their nanosecond predecessors in the context of targeted destruction of tattoo ink. Within the last 4 years, more than a decade after those experiments, the first commercially available cutaneous picosecond laser unit became available (Cynosure, Westford, Massachusetts), and several pilot studies have demonstrated its utility in tattoo removal. An experimental picosecond infrared laser has also recently demonstrated a nonthermal tissue ablative capability in soft tissue, bone, and dentin. In this article, we review the published data pertaining to dermatology on picosecond lasers from their initial reports to the present as well as discuss forthcoming technology.
选择性光热作用最早于1983年在靶向显微手术的背景下被讨论,它提出特定热损伤的最佳参数严重依赖于能量传递到组织的持续时间。当时,尽管人们通过各种补偿性冷却机制努力减轻非特异性热损伤,但它一直是所有商用激光的固有局限性。15年后,实验性皮秒激光首次在皮肤科文献中被报道,在靶向破坏纹身墨水方面比纳秒级的前辈激光显示出更高的疗效。在这些实验十多年后的过去4年里,第一台商用皮肤皮秒激光设备问世(赛诺秀公司,马萨诸塞州韦斯特福德),并且几项初步研究已经证明了其在纹身去除方面的效用。最近,一台实验性皮秒红外激光还在软组织、骨骼和牙本质中展示了非热组织消融能力。在本文中,我们回顾了从最初报道到目前有关皮秒激光在皮肤科方面的已发表数据,并讨论即将出现的技术。