Characterization of human brain material properties in the form of computationally feasible mathematical models is a complex problem; especially when the models are used in complicated Finite Element simulations. Various models have been proposed to include the tissue’s hyper-viscoelasticity, most of which are quite complicated and therefore only suited to Software-based Finite Element methods. Use of linear material models simplifies the problem and saves much time and effort, allowing the researcher to verify the results of more sophisticated models with lower computational cost. However, the preciseness of the results from such models is subject to special conditions. This study proposes and validates a Generalized Maxwell linear viscoel...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Understanding the constitutive behavior of the human brain is critical to interpret the physical env...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
In a recent experiment for determining the mechanical response of brain in vivo, a probe, inserted t...
Computational head models are promising tools for understanding and predicting traumatic brain injur...
Finite element (FE) models of the human head have been used extensively to assess engineering respon...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
The biomechanical characterization of human brain tissue and the development of appropriate mechanic...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Understanding the constitutive behavior of the human brain is critical to interpret the physical env...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In current Finite Element (FE) head models, brain tissue is commonly assumed to display linear visco...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
In a recent experiment for determining the mechanical response of brain in vivo, a probe, inserted t...
Computational head models are promising tools for understanding and predicting traumatic brain injur...
Finite element (FE) models of the human head have been used extensively to assess engineering respon...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
The biomechanical characterization of human brain tissue and the development of appropriate mechanic...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Finite Element (FE) head models are often used to understand mechanical response of the head and its...
Understanding the constitutive behavior of the human brain is critical to interpret the physical env...