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基于掺镱光纤和掺镱钇铝石榴石细棒的超快激光系统的研制,用于使用哈特利豚鼠对色素沉着病变治疗进行临床前研究。

Development of an ultrafast laser system based on a Yb-doped fiber and a Yb:YAG thin-rod for the preclinical study of pigmented lesions treatment using a Hartley guinea pig.

作者信息

Kim Jun Wan, Kim Guang-Hoon, Park Seolwon, Park Byung Cheol, Kim Soon Re, Kim Juhee, Yang Juhee

机构信息

Applied Electromagnetic Wave Research Center, Korea Electrotechnology Research Institute (KERI), Ansan 15588, Republic of Korea.

Department of Dermatology, College of Medicine, Dankook University, Cheonan 31116, Republic of Korea.

出版信息

Biomed Opt Express. 2024 Oct 10;15(11):6313-6323. doi: 10.1364/BOE.540536. eCollection 2024 Nov 1.

Abstract

In this research, we developed an ultrafast laser system based on a Yb-doped fiber oscillator and Yb:YAG thin-rod amplifier to investigate the efficacy of the laser for the treatment of pigmented lesions. The developed laser exhibited an output power of 22.7 W, center wavelength of 1030 nm, repetition rate of 495 kHz, pulse energy of 45.9 µJ, and pulse duration of 1.56 ps, respectively. For a compact and stable chirped pulse amplification system, a chirped fiber Bragg grating (CFBG) stretcher and a chirped volume Bragg grating (CVBG) compressor, both with fixed dispersion, were used. The dispersion of the total laser systems was precisely compensated by adjusting the length of the passive fiber and utilizing the self-phase modulation effect of the fiber amplifier. The developed ultrafast laser system was then applied in preclinical studies for the treatment of pigmented lesions in a guinea pig model. Three colored squares, each measuring approximately 15 × 15 mm, were treated by scanning a focused beam with varying laser fluences ranging from 0.5 to 2 J/cm, using wavelengths of 515 nm and 1030 nm. The colorimeter measurements, which were performed 1-5 weeks after laser treatment, indicated that the laser was effective in reducing pigment, particularly black and blue pigments at higher fluences. This research represents the first trial of a preclinical study on pigmented lesions using an ultrafast laser system with a pulse duration below 10 ps, shorter than the stress relaxation time of 10 nm melanin granules. The results are meaningful as they offer valuable insights into the effectiveness of ultrafast laser therapy.

摘要

在本研究中,我们开发了一种基于掺镱光纤振荡器和Yb:YAG细棒放大器的超快激光系统,以研究该激光治疗色素沉着病变的疗效。所开发的激光输出功率为22.7W,中心波长为1030nm,重复频率为495kHz,脉冲能量为45.9µJ,脉冲持续时间为1.56ps。对于紧凑且稳定的啁啾脉冲放大系统,使用了具有固定色散的啁啾光纤布拉格光栅(CFBG)展宽器和啁啾体布拉格光栅(CVBG)压缩器。通过调整无源光纤的长度并利用光纤放大器的自相位调制效应,精确补偿了整个激光系统的色散。然后,将所开发的超快激光系统应用于豚鼠模型色素沉着病变治疗的临床前研究。通过用波长为515nm和1030nm、激光能量密度范围为0.5至2J/cm²的聚焦光束扫描,对三个边长约为15×15mm的彩色方块进行了治疗。在激光治疗后1至5周进行的色度计测量表明,该激光在减少色素方面有效,尤其是在较高能量密度下对黑色和蓝色色素的减少效果显著。本研究是首次使用脉冲持续时间低于10ps的超快激光系统对色素沉着病变进行临床前研究,该脉冲持续时间短于10nm黑色素颗粒的应力松弛时间。这些结果具有重要意义,因为它们为超快激光治疗的有效性提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3069/11563317/72c947d7108c/boe-15-11-6313-g001.jpg

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