Skeletal muscle tissues have complex geometries. In addition, the complex fibre orientation arrangement makes it quite difficult to create an accurate finite element muscle model. There are many possible ways to specify the complex fibre orientations in a finite element model, for example defining a local element coordinate system. In this paper, an alternative method using ABAQUS, which is combination of the finite element method and the non-uniform rational B-spline solid representation, is proposed to calculate the initial fibre orientations. The initial direction of each muscle fibre is specified as the tangent direction of the NURBS curve which the fibre lies on, and the directions of the deformed fibres are calculated from the initial...
The highly organized collagen network of human lumbar a nnulus fibrosus (AF) is fundamental to prese...
Modeling of anatomically accurate skeletal muscle models is still a challenging area of research to ...
The normal physiological loads from muscles experienced by the spine are largely unknown due to a la...
Skeletal muscle tissues have complex geometries. In addition, the complex fibre orientation arrangem...
Finite elements analysis (FEA) is now used routinely to interpret skeletal form in terms of function...
International audienceThis paper presents a novel approach for simulating 3D muscle deformations wit...
A parametric B-spline solid model is used to produce a combined model of muscle that captures both i...
A mathematical model that simulates the mechanical processes inside a skeletal muscle under various ...
The mechanical behaviour of soft biological tissues is governed by phenomena occurring on different ...
In many biomechanical problems, the availability of a suitable model for the wrapping of muscles whe...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
In this contribution we create three-dimensional (3D) finite element models from a series of histolo...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
<p>Frontal (A) and dorsal (B) views of the model. The model was divided into 42 areas (represented w...
The muscle-tendon complex (MTC) is a multi-scale, anisotropic, non-homogeneous structure. It iscompo...
The highly organized collagen network of human lumbar a nnulus fibrosus (AF) is fundamental to prese...
Modeling of anatomically accurate skeletal muscle models is still a challenging area of research to ...
The normal physiological loads from muscles experienced by the spine are largely unknown due to a la...
Skeletal muscle tissues have complex geometries. In addition, the complex fibre orientation arrangem...
Finite elements analysis (FEA) is now used routinely to interpret skeletal form in terms of function...
International audienceThis paper presents a novel approach for simulating 3D muscle deformations wit...
A parametric B-spline solid model is used to produce a combined model of muscle that captures both i...
A mathematical model that simulates the mechanical processes inside a skeletal muscle under various ...
The mechanical behaviour of soft biological tissues is governed by phenomena occurring on different ...
In many biomechanical problems, the availability of a suitable model for the wrapping of muscles whe...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
In this contribution we create three-dimensional (3D) finite element models from a series of histolo...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
<p>Frontal (A) and dorsal (B) views of the model. The model was divided into 42 areas (represented w...
The muscle-tendon complex (MTC) is a multi-scale, anisotropic, non-homogeneous structure. It iscompo...
The highly organized collagen network of human lumbar a nnulus fibrosus (AF) is fundamental to prese...
Modeling of anatomically accurate skeletal muscle models is still a challenging area of research to ...
The normal physiological loads from muscles experienced by the spine are largely unknown due to a la...