High-Intensity Focused Ultrasound Technology: Physical Principles, Biological Effects, and Clinical Applications in Facial and Neck Rejuvenation

High-Intensity Focused Ultrasound (HIFU) has emerged as a revolutionary non-invasive technology in aesthetic medicine, enabling targeted tissue remodelling and skin rejuvenation through precise thermal and mechanical effects. This narrative review provides a comprehensive examination of the physical foundations of HIFU, including acoustic wave propagation, piezoelectric energy conversion, and transducer design. It also explores its biological mechanisms, including collagen denaturation, neocollagenesis, fibroblast activation, and extracellular matrix remodelling. Clinically, HIFU has shown significant efficacy in improving skin laxity, reducing wrinkles, and enhancing facial and neck contours, with a favourable safety profile supported by multiple studies. The review also examines the limitations of conventional HIFU devices and describes the newest emerging multi-transducer platform with multi-depth cartridges and dynamic applicators. Key gaps in the literature include the scarcity of randomised controlled trials, limited data on higher Fitzpatrick skin phototypes, and the lack of standardised treatment protocols. By synthesising current evidence, this work positions HIFU as an established modality in aesthetic dermatology. A multi-transducer HIFU platform is discussed as a technically interesting emerging platform whose proposed advantages in precision, homogeneity, and comfort remain to be confirmed by independent comparative and randomised studies.

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Publication Details

Journal
Biomedicines
Published
2026-09-24
DOI
https://doi.org/10.3390/biomedicines14102158
Primary Topic
Ultrasound and Hyperthermia Applications
Type
article
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article

High-Intensity Focused Ultrasound Technology: Physical Principles, Biological Effects, and Clinical Applications in Facial and Neck Rejuvenation

Valentina Gutierrez, Pablo Durán, Maricarmen Chacín, Valmore Bermúdez et al.
Biomedicines
Ultrasound and Hyperthermia Applications
article

High-Intensity Focused Ultrasound Technology: Physical Principles, Biological Effects, and Clinical Applications in Facial and Neck Rejuvenation

Valentina Gutierrez, Pablo Durán, Maricarmen Chacín, Valmore Bermúdez, Julio R. Contreras, Carlos Hernán Gonzalez Parías, Ivana Vera, Antony Lombana Jiménez, Ana Milena Rojas Calero, José Londoño-Arias, Lady Giovanna Muñoz, Amurabit Santos
article en

Abstract

High-Intensity Focused Ultrasound (HIFU) has emerged as a revolutionary non-invasive technology in aesthetic medicine, enabling targeted tissue remodelling and skin rejuvenation through precise thermal and mechanical effects. This narrative review provides a comprehensive examination of the physical foundations of HIFU, including acoustic wave propagation, piezoelectric energy conversion, and transducer design. It also explores its biological mechanisms, including collagen denaturation, neocollagenesis, fibroblast activation, and extracellular matrix remodelling. Clinically, HIFU has shown significant efficacy in improving skin laxity, reducing wrinkles, and enhancing facial and neck contours, with a favourable safety profile supported by multiple studies. The review also examines the limitations of conventional HIFU devices and describes the newest emerging multi-transducer platform with multi-depth cartridges and dynamic applicators. Key gaps in the literature include the scarcity of randomised controlled trials, limited data on higher Fitzpatrick skin phototypes, and the lack of standardised treatment protocols. By synthesising current evidence, this work positions HIFU as an established modality in aesthetic dermatology. A multi-transducer HIFU platform is discussed as a technically interesting emerging platform whose proposed advantages in precision, homogeneity, and comfort remain to be confirmed by independent comparative and randomised studies.

BiomedicinesVol. 14(10)
Universidad del Zulia (VE), Antioquia Institute of Technology (CO), University of the Coast (CO), Universidad Simón Bolívar (CO), Institución Universitaria Antonio José Camacho (CO)
Affordable and clean energy
Openalex Percentile: Top 21%
Ultrasound and Hyperthermia Applications
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