In this work, we extend our previous esophageal transport model using an immersed boundary (IB) method with discrete fiber-based structural model, to one using a continuum mechanics-based model that is approximated based on finite elements (IB-FE). To deal with the leakage of flow when the Lagrangian mesh becomes coarser than the fluid mesh, we employ adaptive interaction quadrature points to deal with Lagrangian-Eulerian interaction equations based on a previous work (Griffith and Luo [1]). In particular, we introduce a new anisotropic adaptive interaction quadrature rule. The new rule permits us to vary the interaction quadrature points not only at each time-step and element but also at different orientations per element. This helps to av...
Biological tissue can be viewed as porous, permeable and deformable media infiltrated by fluids, suc...
New hybrid Eulerian/Lagrangian model is presented accounting for the two-way coupling between the pu...
We present a novel framework inspired by the Immersed Boundary Method for predicting the fluid-struc...
In this work, we extend our previous esophageal transport model using an immersed boundary (IB) meth...
Esophageal transport is a physiological process that mechanically transports an ingested food bolus ...
Esophageal transport is a physiological process that mechanically transports an ingested food bolus ...
For simulations of biological flows, our original immersed solid method and feedback immersed bounda...
The immersed boundary method is an approach to fluid-structure interaction that uses a Lagrangian d...
Esophagus is a cylindrical shaped biological structure with a lumen of variable diameter surrounded ...
[[abstract]]For shape maintenance and migration of living organisms, bio-polymer materials play impo...
Simulating the mechanics and growth of soft biological and biomimetic materials (e.g., hydrogels, fi...
Mathematical modelling is an essential and convenient tool to understand the systemic mechanism of h...
This dissertation is a research about the mechanical behavior of the human esophagus. This work is i...
Immersed fibres are a very useful tool for modeling moving, elastic interfaces that interact with a ...
This thesis develops an immersed peridynamics method to simulate the deformation, damage, and failur...
Biological tissue can be viewed as porous, permeable and deformable media infiltrated by fluids, suc...
New hybrid Eulerian/Lagrangian model is presented accounting for the two-way coupling between the pu...
We present a novel framework inspired by the Immersed Boundary Method for predicting the fluid-struc...
In this work, we extend our previous esophageal transport model using an immersed boundary (IB) meth...
Esophageal transport is a physiological process that mechanically transports an ingested food bolus ...
Esophageal transport is a physiological process that mechanically transports an ingested food bolus ...
For simulations of biological flows, our original immersed solid method and feedback immersed bounda...
The immersed boundary method is an approach to fluid-structure interaction that uses a Lagrangian d...
Esophagus is a cylindrical shaped biological structure with a lumen of variable diameter surrounded ...
[[abstract]]For shape maintenance and migration of living organisms, bio-polymer materials play impo...
Simulating the mechanics and growth of soft biological and biomimetic materials (e.g., hydrogels, fi...
Mathematical modelling is an essential and convenient tool to understand the systemic mechanism of h...
This dissertation is a research about the mechanical behavior of the human esophagus. This work is i...
Immersed fibres are a very useful tool for modeling moving, elastic interfaces that interact with a ...
This thesis develops an immersed peridynamics method to simulate the deformation, damage, and failur...
Biological tissue can be viewed as porous, permeable and deformable media infiltrated by fluids, suc...
New hybrid Eulerian/Lagrangian model is presented accounting for the two-way coupling between the pu...
We present a novel framework inspired by the Immersed Boundary Method for predicting the fluid-struc...