In a recent experiment for determining the mechanical response of brain in vivo, a probe, inserted through scalp, skull and dura, is placed in contact with and normal to the brain, given a prescribed motion, and the time variation of corresponding force is measured. In the corresponding continuum mechanical model, brain is idealized as a linear isotropic viscoelastic solid constrained by a rigid skull. At the mating surface, the shear stress and normal displacement vanish everywhere except under the probe which exerts a local radial displacement. This model introduces effective viscoelastic moduli in shear, which is unknown, and in dilation, which is considered known from other sources. Part I of this study considers steady oscillations of ...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
Finite element (FE) models of the human head have been used extensively to assess engineering respon...
The non-linear mechanical behaviour of porcine brain tissue in different deformation modes is determ...
In a recent experiment for determining the mechanical response of brain in vivo. a probe, inserted t...
Determination of mechanical properties of the constituents of the head is very essential for the con...
Investigators have been studying the mechanical phenomena associated with impact to the head for man...
Characterization of human brain material properties in the form of computationally feasible mathemat...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
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...
With their high degree of specificity and investigator control, in vitro disease models provide a na...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
Finite element (FE) models of the human head have been used extensively to assess engineering respon...
The non-linear mechanical behaviour of porcine brain tissue in different deformation modes is determ...
In a recent experiment for determining the mechanical response of brain in vivo. a probe, inserted t...
Determination of mechanical properties of the constituents of the head is very essential for the con...
Investigators have been studying the mechanical phenomena associated with impact to the head for man...
Characterization of human brain material properties in the form of computationally feasible mathemat...
In this dissertation, theoretical, computational, and experimental methodologies are introduced to d...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
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...
With their high degree of specificity and investigator control, in vitro disease models provide a na...
Conference paperMechanical characterization of brain tissue at high loading velocities is particular...
Finite element (FE) models of the human head have been used extensively to assess engineering respon...
The non-linear mechanical behaviour of porcine brain tissue in different deformation modes is determ...