分数激光皮肤磨皮术。

Fractional laser skin resurfacing.

作者信息

Alexiades-Armenakas Macrene R, Dover Jeffrey S, Arndt Kenneth A

机构信息

Department of Dermatology, Yale University School of Medicine, New Haven, CT, USA.

出版信息

J Drugs Dermatol. 2012 Nov;11(11):1274-87.

DOI:
Abstract

Laser skin resurfacing (LSR) has evolved over the past 2 decades from traditional ablative to fractional nonablative and fractional ablative resurfacing. Traditional ablative LSR was highly effective in reducing rhytides, photoaging, and acne scarring but was associated with significant side effects and complications. In contrast, nonablative LSR was very safe but failed to deliver consistent clinical improvement. Fractional LSR has achieved the middle ground; it combined the efficacy of traditional LSR with the safety of nonablative modalities. The first fractional laser was a nonablative erbium-doped yttrium aluminum garnet (Er:YAG) laser that produced microscopic columns of thermal injury in the epidermis and upper dermis. Heralding an entirely new concept of laser energy delivery, it delivered the laser beam in microarrays. It resulted in microscopic columns of treated tissue and intervening areas of untreated skin, which yielded rapid reepithelialization. Fractional delivery was quickly applied to ablative wavelengths such as carbon dioxide, Er:YAG, and yttrium scandium gallium garnet (2,790 nm), providing more significant clinical outcomes. Adjustable laser parameters, including power, pitch, dwell time, and spot density, allowed for precise determination of percent surface area, affected penetration depth, and clinical recovery time and efficacy. Fractional LSR has been a significant advance to the laser field, striking the balance between safety and efficacy.

摘要

激光皮肤重塑(LSR)在过去20年里已从传统的剥脱性发展为非剥脱性和剥脱性点阵式重塑。传统剥脱性LSR在减少皱纹、光老化和痤疮瘢痕方面非常有效,但伴有明显的副作用和并发症。相比之下,非剥脱性LSR非常安全,但未能带来持续一致的临床改善。点阵式LSR则取得了折中的效果;它将传统LSR的疗效与非剥脱性方式的安全性结合起来。第一台点阵式激光是一台非剥脱性掺铒钇铝石榴石(Er:YAG)激光,它在表皮和真皮上层产生微小的热损伤柱。它开创了一种全新的激光能量传递概念,以微阵列形式发射激光束。这导致了经治疗组织的微小柱体和未治疗皮肤的间隔区域,从而实现了快速再上皮化。点阵式传递很快被应用于二氧化碳、Er:YAG和钇钪镓石榴石(2790纳米)等剥脱性波长,带来了更显著的临床效果。可调节的激光参数,包括功率、间距、停留时间和光斑密度,使得能够精确确定表面积百分比、受影响的穿透深度、临床恢复时间和疗效。点阵式LSR是激光领域的一项重大进展,在安全性和疗效之间取得了平衡。

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