The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accurate determination of the zero-point of the tip-sample interaction on which the depth of penetration into the sample is based. Non-cantilever based nanoindentation systems were originally designed for hard materials, and therefore monitoring the zero-point contact presents a significant challenge for the characterisation of very soft biomaterials. This study investigates the ability of non-cantilever based nanoindentation to differentiate between hydrogels with elastic moduli on the order of single kiloPascals (kPa) using a bespoke soft contact protocol and low flexural stiffness of instrument. Polyethylene glycol (PEG) hydrogels were fabricate...
Characterization of the mechanical properties of biological materials is often complicated by small ...
We present a method for measuring the shear complex modulus of hydrogels by oscillatory nanoindentat...
Mechanical characterization of hydrogels is a challenging task because they are much softer than met...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Nanoindentation is a valuable tool for characterization of biomaterials due to its ability to measur...
Nanoindentation refers to a class of experimental techniques where a micrometric force probe is used...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
An understanding of the mechanical properties of soft hydrogel materials over multiple length scales...
© 2015 Elsevier Ltd. Oligo(ethylene glycol)-based (OEG) hydrogel samples of varying cross-link densi...
Soft, biphasic materials such as hydrogels are commonly used to mimic lubrication and confinement me...
Although both spherical and flat tips have been used in nanoindentation studies of soft biomaterials...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
Characterization of the mechanical properties of biological materials is often complicated by small ...
We present a method for measuring the shear complex modulus of hydrogels by oscillatory nanoindentat...
Mechanical characterization of hydrogels is a challenging task because they are much softer than met...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Nanoindentation is a valuable tool for characterization of biomaterials due to its ability to measur...
Nanoindentation refers to a class of experimental techniques where a micrometric force probe is used...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
An understanding of the mechanical properties of soft hydrogel materials over multiple length scales...
© 2015 Elsevier Ltd. Oligo(ethylene glycol)-based (OEG) hydrogel samples of varying cross-link densi...
Soft, biphasic materials such as hydrogels are commonly used to mimic lubrication and confinement me...
Although both spherical and flat tips have been used in nanoindentation studies of soft biomaterials...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
Characterization of the mechanical properties of biological materials is often complicated by small ...
We present a method for measuring the shear complex modulus of hydrogels by oscillatory nanoindentat...
Mechanical characterization of hydrogels is a challenging task because they are much softer than met...