In vitro hyperspectral analysis of tattoo dyes

Author:

Stolecka‐Warzecha Anna1,Chmielewski Łukasz2,Wilczyński Sławomir1ORCID,Koprowski Robert3

Affiliation:

1. Department of Basic Biomedical Science, Faculty of Pharmaceutical Sciences in Sosnowiec Medical University of Silesia in Katowice Sosnowiec Poland

2. Department of Motion Organ Reconstruction Surgery Provincial Specialist Hospital Megrez Tychy Poland

3. Institute of Biomedical Engineering Faculty of Science and Technology University of Silesia in Katowice Sosnowiec Poland

Abstract

AbstractBackgroundThere is no method that can guarantee effective, quick, and noninvasive removal of tattoo dyes. Laser methods are considered to be the method of choice. In this study, an attempt was made to determine the in vitro spectral characteristics of selected dyes used in permanent makeup and tattoos and to analyze the obtained parameters in terms of laser treatments optimization.Materials and methodsHyperspectral analysis was performed to determine the spectral characteristics of the dye on the entire surface of the slide. Seven dyes used in permanent makeup and tattoos were analyzed in vitro. The maximum reflectance and the wavelength for a given dye were determined for the maximum reflectance in the studied wavelength range: 400–1000 nm. The optical properties of the dyes were determined based on visible light imaging using camera.ResultsThe maximum radiation reflectance ranges from 634 to 732 nm for the tested dyes. Visually very similar colors may differ significantly in the wavelength for which the maximum absorption of the radiation occurs. White and yellow dyes are characterized by the highest reflectance value. The black dye is characterized by the lowest reflectance coefficient. Low reflectance of black dye results in more safe and effective removal treatments.ConclusionThe homogeneity of radiation absorption can be identified using methods of analysis and processing of images in visible light. Optimization of the wavelength of which the maximum absorption/reflectance of radiation occurs may allow us to increase the effectiveness of laser treatments for removing permanent makeup and tattoos.

Funder

Śląski Uniwersytet Medyczny

Publisher

Wiley

Subject

Dermatology

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