Javascript must be enabled to continue!
ELASTIC AND HYPERELASTIC PROPERTIES OF THE HUMAN NAIL PLATE
View through CrossRef
Introduction. As is known, changes in the nail, as an appendage of the skin, can be genetically determined, caused by injuries, diseases, medications or exposure to harmful substances. Installation of partial or complete dentures may be required for any form of growth disorder of the nail plate (onychodystrophy). Prosthetics can act as a means of masking nail abnormalities. In all these cases, knowledge of the mechanical properties of both the replacement materials and the nail plate itself is necessary. However, the latter have not been fully studied; there is no detailed knowledge about the elastic and hyperelastic characteristics of the biomaterial. The aim of the study. The mechanical properties of the human nail plate are compared with elastic and hyperelastic models of continuum mechanics (large deformations). Methods. Experimental σ-ε curves obtained from literature data were used. The computer algebra system Mathcad 15.0 and the multifunctional finite element analysis package ANSYS 2022 R2 were used. Results. The parameters of the linear and 6-hyperelastic models were calculated and their correspondence to the initial data was determined. Among hyperelastic models, the 5-parameter Mooney–Rivlin model and the 2nd order polynomial model are best suited to describe the mechanical properties of the nail plate. These models have the highest correlation coefficient R=0.98 and the following statistical indicators SD=0.005 GPa, δmax=0.011 GPa, δ=12.93%. The greatest discrepancies between the experimental and model data were demonstrated by the Ogden model of the 1st order nail plate (R=0.84) and the simplest hyperelastic neohookean model (R=0.86). The stability of the models (dσ/dε sign) at small deformations was studied. Conclusion. The results obtained can be useful for podiatrists involved in the development of methods for restoring nail plates using artificial replacement materials and are recommended for use in nail tissue engineering.
Russian Vrach, Publishing House Ltd.
Title: ELASTIC AND HYPERELASTIC PROPERTIES OF THE HUMAN NAIL PLATE
Description:
Introduction.
As is known, changes in the nail, as an appendage of the skin, can be genetically determined, caused by injuries, diseases, medications or exposure to harmful substances.
Installation of partial or complete dentures may be required for any form of growth disorder of the nail plate (onychodystrophy).
Prosthetics can act as a means of masking nail abnormalities.
In all these cases, knowledge of the mechanical properties of both the replacement materials and the nail plate itself is necessary.
However, the latter have not been fully studied; there is no detailed knowledge about the elastic and hyperelastic characteristics of the biomaterial.
The aim of the study.
The mechanical properties of the human nail plate are compared with elastic and hyperelastic models of continuum mechanics (large deformations).
Methods.
Experimental σ-ε curves obtained from literature data were used.
The computer algebra system Mathcad 15.
0 and the multifunctional finite element analysis package ANSYS 2022 R2 were used.
Results.
The parameters of the linear and 6-hyperelastic models were calculated and their correspondence to the initial data was determined.
Among hyperelastic models, the 5-parameter Mooney–Rivlin model and the 2nd order polynomial model are best suited to describe the mechanical properties of the nail plate.
These models have the highest correlation coefficient R=0.
98 and the following statistical indicators SD=0.
005 GPa, δmax=0.
011 GPa, δ=12.
93%.
The greatest discrepancies between the experimental and model data were demonstrated by the Ogden model of the 1st order nail plate (R=0.
84) and the simplest hyperelastic neohookean model (R=0.
86).
The stability of the models (dσ/dε sign) at small deformations was studied.
Conclusion.
The results obtained can be useful for podiatrists involved in the development of methods for restoring nail plates using artificial replacement materials and are recommended for use in nail tissue engineering.
Related Results
Nail Anatomy, Nail Psoriasis, and Nail Extensor Enthesitis Theory: What Is the Link?
Nail Anatomy, Nail Psoriasis, and Nail Extensor Enthesitis Theory: What Is the Link?
Abstract:
The concept of the nail unit as a musculoskeletal appendage has become popular in the dermatological and rheumatological literature. However, an exact knowledge...
Nail Psoriasis in Nigerians
Nail Psoriasis in Nigerians
Background: Psoriasis is an inflammatory skin disorder that commonly affects the nails. Studies on psoriasis in our environment are very few, and data on nail abnormalities in our ...
Total Nail Avulsion for Pincer Nail: Report of Two Cases
Total Nail Avulsion for Pincer Nail: Report of Two Cases
Summary:
Pincer nail is a common condition characterized by excessive transverse curvature of the nail that causes pain, cosmetic problems, and functional limitation. S...
Nail unit incision lines: A tool to minimize nail unit scarring
Nail unit incision lines: A tool to minimize nail unit scarring
Abstract
Langer’s lines, lines of cleavage, and biodynamic excisional skin tension (BEST) lines have been defined for cutaneous surgery to ensure excisional wound closure...
A Combination of Nail Grinding and Nail Fold Resection for a Juvenile’s Pincer Nail Deformity
A Combination of Nail Grinding and Nail Fold Resection for a Juvenile’s Pincer Nail Deformity
Pincer nail is a severe variant of nail deformity characterized by excessive transverse curvature of the nail, impinging on both lateral nail folds. The distal end is the most curv...
Hip fixation nail [HFN] /Intramedullary hip screw nail IMHSN management of trochanteric fractures with hip fixation nail- Innovative nail:A prospective pilot study in initial 43 cases
Hip fixation nail [HFN] /Intramedullary hip screw nail IMHSN management of trochanteric fractures with hip fixation nail- Innovative nail:A prospective pilot study in initial 43 cases
Intertrochanteric fractures can be fixed with various implants with surface implants or intramedullary implants. A study was done on Fixation of trochanteric fractures with Hip Fix...
Artificial Intelligence in Diagnosis and Management of Nail Disorders: A Narrative Review
Artificial Intelligence in Diagnosis and Management of Nail Disorders: A Narrative Review
Abstract
Background:
Artificial intelligence (AI) is revolutionizing healthcare by enabling systems to perform tasks traditionally requiring huma...
EVALUATING HYPERELASTIC AND ALTERNATIVE DEFORMATION MODELS FOR ACCURATE CHARACTERIZATION OF THE MECHANICAL PROPERTIES OF BIOLOGICAL TISSUES
EVALUATING HYPERELASTIC AND ALTERNATIVE DEFORMATION MODELS FOR ACCURATE CHARACTERIZATION OF THE MECHANICAL PROPERTIES OF BIOLOGICAL TISSUES
Although hyperelastic models have been studied for almost 80 years, selecting one that accurately describes the mechanical response of materials remains a challenge. The most promi...

