Analysis of in-vivo skin anisotropy using elastic wave measurements and Bayesian modelling

Fuente: arXiv
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Main Authors: Nagle, Matt, Price, Susan, Trotta, Antonia, Destrade, Michel, Fop, Michael, Annaidh, Aisling Ní
Format: Preprint
Published: 2025
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author Nagle, Matt
Price, Susan
Trotta, Antonia
Destrade, Michel
Fop, Michael
Annaidh, Aisling Ní
author_facet Nagle, Matt
Price, Susan
Trotta, Antonia
Destrade, Michel
Fop, Michael
Annaidh, Aisling Ní
contents In vivo skin exhibits viscoelastic, hyper-elastic and non-linear characteristics. It is under a constant non-equibiaxial tension in its natural configuration and is reinforced with oriented collagen fibers, giving rise to anisotropic behaviour. Understanding the complex mechanical behaviour of skin has relevance across many sectors including pharmaceuticals, cosmetics and surgery. However, there is a dearth of quality data characterizing human skin anisotropy in vivo. The available data is usually confined to limited population groups and/or limited angular resolution. Here, we use elastic waves travelling through the skin to obtain measurements from 78 volunteers from 3 to 93 years old. Using a Bayesian framework, we analyse the effect that age, gender and level of skin tension have on the skin anisotropy and stiffness. First, we propose a new measurement of anisotropy based on the eccentricity of angular data and conclude that it is a more robust measurement compared to the classic ``anisotropic ratio". We then find that in vivo skin anisotropy increases logarithmically with age, while the skin stiffness increases linearly along the direction of Langer Lines. We also conclude that gender does not significantly affect the skin anisotropy level, but does affect the overall stiffness, with males having stiffer skin on average. Finally, we find that skin tension significantly affects both the anisotropy and stiffness measurements, indicating that elastic wave measurements have promising applications in determining in vivo skin tension. In contrast to earlier studies, these results represent a comprehensive assessment of the variation of skin anisotropy with age and gender using a sizeable dataset and robust modern statistical analysis. This data has implications for the planning of surgical procedures and the adoption of universal cosmetic surgery practices for young or elderly patients.
format Preprint
id arxiv_https___arxiv_org_abs_2506_02248
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analysis of in-vivo skin anisotropy using elastic wave measurements and Bayesian modelling
Nagle, Matt
Price, Susan
Trotta, Antonia
Destrade, Michel
Fop, Michael
Annaidh, Aisling Ní
Biological Physics
Soft Condensed Matter
In vivo skin exhibits viscoelastic, hyper-elastic and non-linear characteristics. It is under a constant non-equibiaxial tension in its natural configuration and is reinforced with oriented collagen fibers, giving rise to anisotropic behaviour. Understanding the complex mechanical behaviour of skin has relevance across many sectors including pharmaceuticals, cosmetics and surgery. However, there is a dearth of quality data characterizing human skin anisotropy in vivo. The available data is usually confined to limited population groups and/or limited angular resolution. Here, we use elastic waves travelling through the skin to obtain measurements from 78 volunteers from 3 to 93 years old. Using a Bayesian framework, we analyse the effect that age, gender and level of skin tension have on the skin anisotropy and stiffness. First, we propose a new measurement of anisotropy based on the eccentricity of angular data and conclude that it is a more robust measurement compared to the classic ``anisotropic ratio". We then find that in vivo skin anisotropy increases logarithmically with age, while the skin stiffness increases linearly along the direction of Langer Lines. We also conclude that gender does not significantly affect the skin anisotropy level, but does affect the overall stiffness, with males having stiffer skin on average. Finally, we find that skin tension significantly affects both the anisotropy and stiffness measurements, indicating that elastic wave measurements have promising applications in determining in vivo skin tension. In contrast to earlier studies, these results represent a comprehensive assessment of the variation of skin anisotropy with age and gender using a sizeable dataset and robust modern statistical analysis. This data has implications for the planning of surgical procedures and the adoption of universal cosmetic surgery practices for young or elderly patients.
title Analysis of in-vivo skin anisotropy using elastic wave measurements and Bayesian modelling
topic Biological Physics
Soft Condensed Matter
url https://arxiv.org/abs/2506.02248