\u3cp\u3eWhile the quest for understanding and even mimicking biological tissue has propelled, over the last decades, more and more experimental activities at the micro and nanoscales, the appropriate evaluation and interpretation of respective test results has remained a formidable challenge. As a contribution to tackling this challenge, we here describe a new method for identifying, from nanoindentation, the elasticity of the undamaged extracellular bone matrix. The underlying premise is that the tested bovine bone sample is either initially damaged (i.e. exhibits micro-cracks a priori) or that such micro-cracks are actually induced by the nanoindentation process itself, or both. Then, (very many) indentations may relate to either an inta...
Nanoindentation provides the ideal framework to determine mechanical properties of bone at the tissu...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
Alterations to the bone structure from cycle loadings can undermine its damage resistance at multipl...
While the quest for understanding and even mimicking biological tissue has propelled, over the last ...
International audienceThis work consists of the validation of a novel approach to estimate the local...
Fracture in bone is common in a wide variety of health situations, and is of particular interest to ...
The aim of this paper is to show that damage mechanisms can account for the response of lamellar bon...
Nanoindentation testing is a technique that is used to measure mechanical properties of materials at...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
The elastic modulus and hardness of several microstructure components of dry bovine vertebrae and ti...
In the present study, nano- and macro-scale characterisations on the mechanical properties of bovine...
AbstractWe here report an improved experimental technique for the determination of Young׳s modulus a...
In the present study, nano- and macro-scale characterisations on the mechanical properties of bovine...
Division of Biomechanics participates in a project together with Department of Cancer Research and M...
This review is summarizing the results obtained from atomic force microscopy (AFM) and nanoindentati...
Nanoindentation provides the ideal framework to determine mechanical properties of bone at the tissu...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
Alterations to the bone structure from cycle loadings can undermine its damage resistance at multipl...
While the quest for understanding and even mimicking biological tissue has propelled, over the last ...
International audienceThis work consists of the validation of a novel approach to estimate the local...
Fracture in bone is common in a wide variety of health situations, and is of particular interest to ...
The aim of this paper is to show that damage mechanisms can account for the response of lamellar bon...
Nanoindentation testing is a technique that is used to measure mechanical properties of materials at...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
The elastic modulus and hardness of several microstructure components of dry bovine vertebrae and ti...
In the present study, nano- and macro-scale characterisations on the mechanical properties of bovine...
AbstractWe here report an improved experimental technique for the determination of Young׳s modulus a...
In the present study, nano- and macro-scale characterisations on the mechanical properties of bovine...
Division of Biomechanics participates in a project together with Department of Cancer Research and M...
This review is summarizing the results obtained from atomic force microscopy (AFM) and nanoindentati...
Nanoindentation provides the ideal framework to determine mechanical properties of bone at the tissu...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
Alterations to the bone structure from cycle loadings can undermine its damage resistance at multipl...