Articles | Open Access | DOI: https://doi.org/10.37547/tajet/Volume07Issue03-21

Application of Modern Technologies and Hybrid Solutions in Manicure

Kseniia Pereshliuga , Founder of the educational project in the beauty service industry - NailMentor Pro Aventura, USA

Abstract

This study provides a comprehensive analysis of the implementation of modern technologies and hybrid solutions in the manicure industry. Innovative trends are examined, including AI-powered nail printers, augmented reality applications, 3D printing, robotic manicure systems, and the unique characteristics of hybrid manicure techniques that combine the advantages of traditional and contemporary coatings. The research is based on an analysis of existing studies as well as publicly available data from online sources. The applied methodological approaches allow for an assessment of the potential of digital innovations in improving the quality, durability, and safety of manicure procedures. The findings demonstrate that the integration of innovative technologies and hybrid techniques can not only fundamentally transform the aesthetic aspects of nail application but also optimize technological processes in the beauty industry. This study presents an interdisciplinary approach that merges cosmetology with advanced technological solutions, fostering the development of new business models, educational programs, and technological breakthroughs in nail application. The insights provided in this article will be valuable for professional nail technicians, beauty salon owners, researchers, entrepreneurs, technology developers, and educational institutions, as modern technologies and hybrid solutions contribute to workflow optimization, service quality enhancement, and the advancement of innovation in the beauty industry.

Keywords

innovative technologies, hybrid manicure, nail art, artificial intelligence, augmented reality, 3D printing

References

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How to Cite

Kseniia Pereshliuga. (2025). Application of Modern Technologies and Hybrid Solutions in Manicure. The American Journal of Engineering and Technology, 7(03), 237–242. https://doi.org/10.37547/tajet/Volume07Issue03-21