The kinematic behavior of models that are based on the finite element method (FEM) for modeling the human body depends greatly on an accurate estimate of the parameters that define such models. This task is complex, and any small difference between the actual biomaterial model and the simulation model based on FEM can be amplified enormously in the presence of nonlinearities. The current paper attempts to demonstrate how a combination of the FEM and the MRS methods with desirability functions can be used to obtain the material parameters that are most appropriate for use in defining the behavior of Finite Element (FE) models of the healthy human lumbar intervertebral disc (IVD). The FE model parameters were adjusted on the basis of experime...
Background: To find treatment options for lower back pain, one must gain insight in the spinal anato...
Intervertebral discs (IVDs) are situated between vertebral bodies (VBs) in the spine and function to...
The spine is a complex system, capable of maintaining stability and simultaneously performing moveme...
The kinematic behavior of models that are based on the finite element method (FEM) for modeling the ...
Background context: The use of finite-element (FE) methods to study the biomechanics of the interver...
The range of possibilities to investigate the biomechanical behavior of human biological structures ...
Finite element models are advantageous in the study of intervertebral disc mechanics as the stress-s...
Due to its ability to represent intricate systems with material nonlinearities as well as irregular ...
Disc degeneration, usually associated with low back pain and changes of intervertebral stiffness, re...
In the biomechanics field, material parameters calibration is significant for finite element (FE) mo...
The knowledge of the lumbar spine biomechanics is essential for clinical applications. Due to the di...
If patient-specific finite element models of the spine could be developed, they would offer enormous...
Abstract: The spine is a complex system, capable of maintaining stability and simultaneously perform...
In computational biomechanics, two separate types of models have been used predominantly to enhance ...
At the present there is a variety of ways to investigate the biomechanical properties of human struc...
Background: To find treatment options for lower back pain, one must gain insight in the spinal anato...
Intervertebral discs (IVDs) are situated between vertebral bodies (VBs) in the spine and function to...
The spine is a complex system, capable of maintaining stability and simultaneously performing moveme...
The kinematic behavior of models that are based on the finite element method (FEM) for modeling the ...
Background context: The use of finite-element (FE) methods to study the biomechanics of the interver...
The range of possibilities to investigate the biomechanical behavior of human biological structures ...
Finite element models are advantageous in the study of intervertebral disc mechanics as the stress-s...
Due to its ability to represent intricate systems with material nonlinearities as well as irregular ...
Disc degeneration, usually associated with low back pain and changes of intervertebral stiffness, re...
In the biomechanics field, material parameters calibration is significant for finite element (FE) mo...
The knowledge of the lumbar spine biomechanics is essential for clinical applications. Due to the di...
If patient-specific finite element models of the spine could be developed, they would offer enormous...
Abstract: The spine is a complex system, capable of maintaining stability and simultaneously perform...
In computational biomechanics, two separate types of models have been used predominantly to enhance ...
At the present there is a variety of ways to investigate the biomechanical properties of human struc...
Background: To find treatment options for lower back pain, one must gain insight in the spinal anato...
Intervertebral discs (IVDs) are situated between vertebral bodies (VBs) in the spine and function to...
The spine is a complex system, capable of maintaining stability and simultaneously performing moveme...