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1064纳米皮秒激光照射后微透镜阵列和衍射光学元件对猪皮的激光诱导光学击穿效应

Laser-induced optical breakdown effects of micro-lens arrays and diffractive optical elements on porcine skin after 1064 nm picosecond laser irradiation.

作者信息

Kim Hyeonsoo, Hwang Jewan Kaiser, Jung Minjung, Choi Jongman, Kang Hyun Wook

机构信息

Industry 4.0 Convergence Bionics Engineering, Pukyong National University, Busan, Republic of Korea.

Mymirae Research Institute for Dermatologic Science, Seoul, Republic of Korea.

出版信息

Biomed Opt Express. 2020 Nov 23;11(12):7286-7298. doi: 10.1364/BOE.410991. eCollection 2020 Dec 1.

Abstract

The current study aims to investigate the effects of micro-lens arrays (MLA) and diffractive optical elements (DOE) on skin tissue via intra-dermal laser-induced optical breakdown (LIOB) after irradiation of 1064-nm picosecond laser light at high energy settings. Irradiation with MLA and DOE was tested on dimming paper, tissue-mimicking phantom, and dark pigmented porcine skin to quantitatively compare distributions of micro-beams, micro-bubbles, and laser-induced vacuoles in the skin. DOE yielded more uniform distributions of the micro-beams on the paper and laser-induced micro-bubbles in the phantom, compared to MLA. The skin test confirmed that the DOE-assisted irradiation accompanied more homogeneous generation of the micro-beams on the tissue surface (deviation of ≤ 3%) and a high density of small laser-induced vacuoles (∼78 µm) in the dermis than the MLA-assisted irradiation (deviation of ∼26% and ∼163 µm). The DOE-assisted picosecond laser irradiation may help to achieve deep and uniformly-generated vacuolization under the basal membrane after intra-dermal LIOB for effective fractional skin treatment.

摘要

本研究旨在通过在高能量设置下用1064纳米皮秒激光照射后进行皮内激光诱导光学击穿(LIOB),研究微透镜阵列(MLA)和衍射光学元件(DOE)对皮肤组织的影响。在调光纸、组织模拟体模和深色猪皮上测试了MLA和DOE照射,以定量比较皮肤中微束、微泡和激光诱导空泡的分布。与MLA相比,DOE在纸上产生的微束分布更均匀,在体模中产生的激光诱导微泡分布更均匀。皮肤测试证实,与MLA辅助照射(偏差约26%和163 µm)相比,DOE辅助照射在组织表面产生的微束更均匀(偏差≤3%),真皮中产生的小激光诱导空泡密度更高(78 µm)。DOE辅助的皮秒激光照射可能有助于在皮内LIOB后在基底膜下实现深度且均匀产生的空泡化,从而进行有效的皮肤分层治疗。

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