Literature DB >> 24500855

Fractional ablative erbium YAG laser: histological characterization of relationships between laser settings and micropore dimensions.

Elisabeth H Taudorf1, Christina S Haak, Andrés M Erlendsson, Peter A Philipsen, R Rox Anderson, Uwe Paasch, Merete Haedersdal.   

Abstract

BACKGROUND AND OBJECTIVES: Treatment of a variety of skin disorders with ablative fractional lasers (AFXL) is driving the development of portable AFXLs. This study measures micropore dimensions produced by a small 2,940 nm AFXL using a variety of stacked pulses, and determines a model correlating laser parameters with tissue effects.
MATERIALS AND METHODS: Ex vivo pig skin was exposed to a miniaturized 2,940 nm AFXL, spot size 225 µm, density 5%, power levels 1.15-2.22 W, pulse durations 50-225 microseconds, pulse repetition rates 100-500 Hz, and 2, 20, or 50 stacked pulses, resulting in pulse energies of 2.3-12.8 mJ/microbeam and total energy levels of 4.6-640 mJ/microchannel. Histological endpoints were ablation depth (AD), coagulation zone (CZ) and ablation width (AW). Data were logarithmically transformed if required prior to linear regression analyses. Results for histological endpoints were combined in a mathematical model.
RESULTS: In 138 sections from 91 biopsies, AD ranged from 16 to a maximum of 1,348 µm and increased linearly with the logarithm of total energy delivered by stacked pulses, but also depended on variations in power, pulse duration, pulse repetition rate, and pulse energy (r(2)  = 0.54-0.85, P < 0.0001). Microchannels deeper than 500 µm were created only by the highest pulse energy of 12.8 mJ/microbeam. Pulse stacking increased AD, and enlarged CZ and AW. CZ varied from 0 to 205 µm and increased linearly with total energy (r(2)  = 0.56-0.75, P < 0.0001). AW ranged from 106 to 422 µm and increased linearly with the logarithm of number of stacked pulses (r(2)  = 0.53-0.61, P < 0.001). The mathematical model estimated micropores of specific ADs with an associated range of CZs and AWs, for example, 300 µm ADs were associated with CZs from 27 to 73 µm and AWs from 190 to 347 µm.
CONCLUSIONS: Pulse stacking with a small, low power 2,940 nm AFXL created reproducible shallow to deep micropores, and influenced micropore configuration. Mathematical modeling established relations between laser settings and micropore dimensions, which assists in choosing laser settings for desired tissue effects.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  MAZ; erbium laser; histology; laser assisted drug delivery; microscopic ablation zone; photothermolysis; resurfacing

Mesh:

Year:  2014        PMID: 24500855     DOI: 10.1002/lsm.22228

Source DB:  PubMed          Journal:  Lasers Surg Med        ISSN: 0196-8092            Impact factor:   4.025


  3 in total

1.  Delivery of Methotrexate and Characterization of Skin Treated by Fabricated PLGA Microneedles and Fractional Ablative Laser.

Authors:  Hiep X Nguyen; Ajay K Banga
Journal:  Pharm Res       Date:  2018-02-21       Impact factor: 4.200

2.  Effects of Er:YAG laser treatment on re-vascularization and follicle survival in frozen/thawed human ovarian cortex transplanted to immunodeficient mice.

Authors:  Linn Salto Mamsen; Hanna Ørnes Olesen; Susanne Elisabeth Pors; Xiaohui Hu; Peter Bjerring; Kåre Christiansen; Cristina Subiran Adrados; Claus Yding Andersen; Stine Gry Kristensen
Journal:  J Assist Reprod Genet       Date:  2021-08-27       Impact factor: 3.357

3.  Treatment Strategies for Hypopigmentation in the Context of Burn Hypertrophic Scars.

Authors:  Bonnie C Carney; Jacqueline P McKesey; Dean S Rosenthal; Jeffrey W Shupp
Journal:  Plast Reconstr Surg Glob Open       Date:  2018-01-18
  3 in total

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