The mechanical properties of soft biological tissues in general and early stage engineered tissues in particular limit the feasibility of conventional tensile tests for their mechanical characterisation. Furthermore, the most important mode in development of deep tissue injury (DTI) is compression. Therefore, an inverse numerical-experimental approach using a finite spherical indentation test is proposed. To demonstrate the feasibility of the approach indentation tests are applied to bio-artificial muscle (BAM) tissue. BAMs are cultured in vitro with (n = 20) or without (n = 12) myoblast cells to quantify the effect of the cells on the passive transverse mechanical properties. Indentation tests are applied up to 80% of the tissue thickness....
Indentation is a commonly used approach to measure the mechanical properties of soft tissues, such a...
Abstract Modern developments of biomedical applications demand a better understanding of mechanical ...
Technologies for soft tissue analysis are advancing at a rapid place. For instance, elastography, wh...
The mechanical properties of soft biological tissues in general and early stage engineered tissues i...
Mechanical properties are essential for understanding diseases that afflict various soft tissues, su...
Heart valve tissue engineering offers a promising alternative for current treatment and replacement ...
Traditionally, the complex mechanical behavior of planar soft biological tissues is characterized by...
One of the hallmarks of biological soft tissues is their capacity to grow and remodel in response to...
AbstractMechanical characterisation of soft biological tissues using standard compression or tensile...
The term ‘biological material’ includes many meanings, and here it means materials that constitute l...
Objectives: Soft tissue exhibits nonlinear stress-strain behavior under compression. Characterizing ...
Indentation is a commonly used approach to measure the mechanical properties of soft tissues, such a...
Abstract Modern developments of biomedical applications demand a better understanding of mechanical ...
Technologies for soft tissue analysis are advancing at a rapid place. For instance, elastography, wh...
The mechanical properties of soft biological tissues in general and early stage engineered tissues i...
Mechanical properties are essential for understanding diseases that afflict various soft tissues, su...
Heart valve tissue engineering offers a promising alternative for current treatment and replacement ...
Traditionally, the complex mechanical behavior of planar soft biological tissues is characterized by...
One of the hallmarks of biological soft tissues is their capacity to grow and remodel in response to...
AbstractMechanical characterisation of soft biological tissues using standard compression or tensile...
The term ‘biological material’ includes many meanings, and here it means materials that constitute l...
Objectives: Soft tissue exhibits nonlinear stress-strain behavior under compression. Characterizing ...
Indentation is a commonly used approach to measure the mechanical properties of soft tissues, such a...
Abstract Modern developments of biomedical applications demand a better understanding of mechanical ...
Technologies for soft tissue analysis are advancing at a rapid place. For instance, elastography, wh...