Mechanical characterization of brain tissue at high loading velocities is particularly important for modelling Traumatic Brain Injury (TBI). During severe impact conditions, brain tissue experiences a mixture of compression, tension and shear. Diffuse axonal injury (DAI) occurs in animals and humans when the strains and strain rates exceed 10 % and 10/s, respectively. Knowing the mechanical properties of brain tissue at these strains and strain rates is thus of particular importance, as they can be used in finite element simulations to predict the occurrence of brain injuries under different impact conditions. In this research, uniaxial tensile tests at strain rates of 30, 60 and 90/s up to 30 % strain and stress relaxation tests in tension...
The head is often considered as the most critical region of the human body for life-threatening inju...
The head is often considered as the most critical region of the human body for life-threatening inju...
a b s t r a c t Mechanical characterization of brain tissue has been investigated extensively by var...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
Mechanical characterisation of brain tissue at high loading velocities is particularly important for...
Traumatic brain injury (TBI) occurs when local mechanical load exceeds certain tolerance levels for ...
IRCOBI Conference 2012, 12 - 14 September 2012, Dublin (Ireland)Mechanical characterization of brain...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
During severe impact conditions, brain tissue experiences a rapid and complex deformation, which can...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
Journal articleMechanical characterization of brain tissue at high loading velocities is crucial for...
Mechanical characterization of brain tissue at high loading velocities is crucial for modeling Traum...
The head is often considered as the most critical region of the human body for life-threatening inju...
The head is often considered as the most critical region of the human body for life-threatening inju...
The head is often considered as the most critical region of the human body for life-threatening inju...
a b s t r a c t Mechanical characterization of brain tissue has been investigated extensively by var...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
Mechanical characterisation of brain tissue at high loading velocities is particularly important for...
Traumatic brain injury (TBI) occurs when local mechanical load exceeds certain tolerance levels for ...
IRCOBI Conference 2012, 12 - 14 September 2012, Dublin (Ireland)Mechanical characterization of brain...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
During severe impact conditions, brain tissue experiences a rapid and complex deformation, which can...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
The mechanical characterization of brain tissue at high loading velocities is vital for understandin...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
Journal articleMechanical characterization of brain tissue at high loading velocities is crucial for...
Mechanical characterization of brain tissue at high loading velocities is crucial for modeling Traum...
The head is often considered as the most critical region of the human body for life-threatening inju...
The head is often considered as the most critical region of the human body for life-threatening inju...
The head is often considered as the most critical region of the human body for life-threatening inju...
a b s t r a c t Mechanical characterization of brain tissue has been investigated extensively by var...