In this work, first a Fortran code is developed for three dimensional linear elastostatics using constant boundary elements; the code is based on a MATLAB code developed by the author earlier. Next, the code is parallelized using BLACS, MPI, and ScaLAPACK. Later, the parallelized code is used to demonstrate the usefulness of the Boundary Element Method (BEM) as applied to the realtime computational simulation of biological organs, while focusing on the speed and accuracy offered by BEM. A computer cluster is used in this part of the work. The commercial software package ANSYS is used to obtain the `exact' solution against which the solution from BEM is compared; analytical solutions, wherever available, are also used to establish the accur...
We propose an efficient numerical algorithm for computing deformations of “very ” soft tissues (such...
Finite element analysis (FEA) enjoys a variety of applications in the field of biomechanics, from si...
For the needs of computer simulation in the field of biomechanics using the finite element method, a...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this chapter, authors provide a description of boundary element method (BEM) applications in biom...
Biomedical engineering solutions like surgical simulators need High Performance Computing (HPC) to a...
The boundary integral technique was implemented in a computer code for the general static analysis o...
A parallel, Boundary Element Method procedure for elastostatic problems is here illustrated. Startin...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
BESLE is the first available parallel open-source code to analyse the mechanical behaviour of hetero...
Finite element analysis (FEA) enjoys a variety of applications in the field of biomechanics, from si...
As described in the previous sections, Computational Methods have played a very important role in so...
Abstract. Realistic deformation of computer-simulated anatomical structures is computationally inten...
We propose an efficient numerical algorithm for computing deformations of “very ” soft tissues (such...
Finite element analysis (FEA) enjoys a variety of applications in the field of biomechanics, from si...
For the needs of computer simulation in the field of biomechanics using the finite element method, a...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this work, possibility of simulating biological organs in realtime using the Boundary Element Met...
In this chapter, authors provide a description of boundary element method (BEM) applications in biom...
Biomedical engineering solutions like surgical simulators need High Performance Computing (HPC) to a...
The boundary integral technique was implemented in a computer code for the general static analysis o...
A parallel, Boundary Element Method procedure for elastostatic problems is here illustrated. Startin...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
BESLE is the first available parallel open-source code to analyse the mechanical behaviour of hetero...
Finite element analysis (FEA) enjoys a variety of applications in the field of biomechanics, from si...
As described in the previous sections, Computational Methods have played a very important role in so...
Abstract. Realistic deformation of computer-simulated anatomical structures is computationally inten...
We propose an efficient numerical algorithm for computing deformations of “very ” soft tissues (such...
Finite element analysis (FEA) enjoys a variety of applications in the field of biomechanics, from si...
For the needs of computer simulation in the field of biomechanics using the finite element method, a...