CHROMALENS PRECISION MAPPING AS AN INNOVATIVE SYSTEM FOR MICROZONAL HAIR ANALYSIS: STRUCTURE, ALGORITHM, AND COMPARISON WITH CLASSICAL COLORING TECHNIQUES

Authors

DOI:

https://doi.org/10.30890/2567-5273.2025-42-02-099

Keywords:

coloring, hair, photometric color stability, professional color science, ChromaLens Precision Mapping.

Abstract

The present article focuses on substantiating the theoretical foundations of the innovative ChromaLens Precision Mapping system, which integrates micro-zonal analysis of the hair fiber, optical mapping, and biometric parameters within the process of profe

References

Thakur, S., Sharma, A., Cieśla, R., Mishra, P. K., & Sharma, V. (2024). A novel approach using ATR-FTIR spectroscopy and chemometric analysis to distinguish male and female human hair samples. Die Naturwissenschaften, 111(1), 9. https://doi.org/10.1007/s00114-024-01896-7

Lourenço, C. B., Fava, A. L. M., Dos Santos, É. M., de Macedo, L. M., Tundisi, L. L., Ataide, J. A., & Mazzola, P. G. (2021). Brief descriptions of the principles of prominent methods used to study the penetration of materials into human hair and a review of examples of their use. International journal of cosmetic science, 43(2), 113–122. https://doi.org/10.1111/ics.12683

Dias Santos, J., Pinto, P. F., Edwards, H. G. M., & Cappa de Oliveira, L. F. (2022). Characterization by Raman and infrared spectroscopy and fluorescence microscopy of human hair treated with cosmetic products. Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 280, 121577. https://doi.org/10.1016/j.saa.2022.121577

Grosvenor, A. J., Deb-Choudhury, S., Middlewood, P. G., Thomas, A., Lee, E., Vernon, J. A., Woods, J. L., Taylor, C., Bell, F. I., & Clerens, S. (2018). The physical and chemical disruption of human hair after bleaching - studies by transmission electron microscopy and redox proteomics. International journal of cosmetic science, 40(6), 536–548. https://doi.org/10.1111/ics.12495

Kim, D. H., Oh, S. H., & Chang, B. S. (2024). Effects of excessive bleaching on hair: comparative analysis of external morphology and internal microstructure. Applied microscopy, 54(1), 11. https://doi.org/10.1186/s42649-024-00104-0

Camargo, F. B., Jr, Minami, M. M., Rossan, M. R., Magalhães, W. V., Porto Ferreira, V. T., & Maia Campos, P. M. B. G. (2022). Prevention of chemically induced hair damage by means of treatment based on proteins and polysaccharides. Journal of cosmetic dermatology, 21(2), 827–835. https://doi.org/10.1111/jocd.14148

Mantuan Gasparin, R., Botelho Lourenço, C., & Ricci Leonardi, G. (2025). Porosity and Resistance of Textured Hair: Assessing Chemical and Physical Damage Under Consumer-Relevant Conditions. Cosmetics, 12(3), 93. https://doi.org/10.3390/cosmetics12030093

Imai, T. (2011). The influence of hair bleach on the ultrastructure of human hair with special reference to hair damage. Okajimas folia anatomica Japonica, 88(1), 1–9. https://doi.org/10.2535/ofaj.88.1

Martins, E., Castro, P., Ribeiro, A. B., Pereira, C. F., Casanova, F., Vilarinho, R., Moreira, J., & Ramos, Ó. L. (2024). Bleached Hair as Standard Template to Insight the Performance of Commercial Hair Repair Products. Cosmetics, 11(5), 150. https://doi.org/10.3390/cosmetics11050150

Ross, A. B., Maes, E., Lee, E. J., Homewood, I., Marsh, J. M., Davis, S. L., & Willicut, R. J. (2022). UV and visible light exposure to hair leads to widespread changes in the hair lipidome. International journal of cosmetic science, 44(6), 672–684. https://doi.org/10.1111/ics.12810

Cedirian, S., Prudkin, L., Piraccini, B. M., Santamaria, J., Piquero-Casals, J., & Saceda-Corralo, D. (2025). The exposome impact on hair health: etiology, pathogenesis and clinical features ‒ Part I. Anais brasileiros de dermatologia, 100(1), 131–140. https://doi.org/10.1016/j.abd.2024.07.003

Cedirian, S., Prudkin, L., Santana, J. A., Piquero-Casals, J., Saceda-Corralo, D., & Piraccini, B. M. (2025). The exposome impact on hair health: non-pharmacological management. Part II⋆. Anais brasileiros de dermatologia, 100(2), 322–327. https://doi.org/10.1016/j.abd.2024.08.006

Samra, T., Lin, R. R., & Maderal, A. D. (2024). The Effects of Environmental Pollutants and Exposures on Hair Follicle Pathophysiology. Skin appendage disorders, 10(4), 262–272. https://doi.org/10.1159/000537745

Ali, N., Marsh, J., Godfrey, S., & Williams, D. R. (2018). Aqueous MEA and Ammonia Sorption-Induced Damage in Keratin Fibers. ACS omega, 3(10), 14173–14180. https://doi.org/10.1021/acsomega.8b01189

Published

2025-12-30

How to Cite

Semen, O. (2025). CHROMALENS PRECISION MAPPING AS AN INNOVATIVE SYSTEM FOR MICROZONAL HAIR ANALYSIS: STRUCTURE, ALGORITHM, AND COMPARISON WITH CLASSICAL COLORING TECHNIQUES. Modern Engineering and Innovative Technologies, 2(42-02), 246–257. https://doi.org/10.30890/2567-5273.2025-42-02-099

Issue

Section

Articles