2006Wiley Encyclopedia of Biomedical EngineeringRequires access

Viscoelasticity

Lynne E. Bilston

Open publisher page 0 citations

Abstract

Abstract Viscoelastic materials, which combine viscous and elastic characteristics, are abundant in the body. The theory of viscoelasticity is widely used to describe their response to mechanical loading, for both physiological and injurious levels of loading. Most viscoelastic materials are nonlinearly viscoelastic for strains of practical interest. This requires the use of nonlinear viscoelastic theories, of which quasi‐linear viscoelasticity is the most common. Structural viscoelastic models, which attempt to replicate the multiphase structure of soft biological tissues, have also been developed and are increasing in flexibility and complexity to better match the observed mechanical behavior of soft tissues. Future challenges in viscoelastic modeling of human body tissues include determiningin vivoproperties and developing computationally efficient models that can still capture the complex nonlinear viscoelastic behavior of these tissues.

About this research paper

What this paper is about

Abstract Viscoelastic materials, which combine viscous and elastic characteristics, are abundant in the body. The theory of viscoelasticity is widely used to describe their response to mechanical loading, for both physiological and injurious levels of loading. Most viscoelastic materials are nonlinearly viscoelastic for strains of practical interest. This requires the use of nonlinear viscoelastic theories, of which quasi‐linear viscoelasticity is the most common. Structural viscoelastic models, which attempt to replicate the multiphase structure of soft biological tissues, have also been developed and are increasing in flexibility and complexity to better match the observed mechanical behavior of soft tissues. Future challenges in viscoelastic modeling of human body tissues include determiningin vivoproperties and developing computationally efficient models that can still capture the complex nonlinear viscoelastic behavior of these tissues.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Viscoelastic materials, which combine viscous and elastic characteristics, are abundant in the body. The theory of viscoelasticity is widely used to describe their response to mechanical loading, for both physiological and injurious levels of loading. Most viscoelastic materials are nonlinearly viscoelastic for strains of practical interest. This requires the use of nonlinear viscoelastic theories, of which quasi‐linear viscoelasticity is the most common. Structural viscoelastic models, which attempt to replicate the multiphase structure of soft biological tissues, have also been developed and are increasing in flexibility and complexity to better match the observed mechanical behavior of soft tissues. Future challenges in viscoelastic modeling of human body tissues include determiningin vivoproperties and developing computationally efficient models that can still capture the complex nonlinear viscoelastic behavior of these tissues.

Key concepts: Viscoelasticity, Flexibility (engineering), Nonlinear system, Materials science, Biological system, Computer science, Mathematics, Composite material

Related papers

Back to paper searchBrowse research topicsOriginal source
Viscoelasticity — Research Paper | ScholarLens