Received: 2019-07-20
Accepted: 2019-09-27
Published Online: 2019-10-30
© 2019 Min-Jhe Lu et al., published by De Gruyter
Articles in the same Issue
- Special Issue: Biomolecular data modeling and mining.
- AngularQA: Protein Model Quality Assessment with LSTM Networks
- A study on discrete and discrete fractional pharmacokinetics-pharmacodynamics models for tumor growth and anti-cancer effects
- Nonlinear simulation of an elastic tumor-host interface
- Towards an understanding of RNA structural modalities: a riboswitch case study
- Special Issue Develop. Appl. Novel Meth. Comput. Biol.
- Using computational approaches to study dengue virus capsid assembly
- Thermal Response in Cellulose Iβ Based on Molecular Dynamics
- Analyzing high dimensional correlated data using feature ranking and classifiers
- CBSF: A New Empirical Scoring Function for Docking Parameterized by Weights of Neural Network
- Special Issue MMBB
- A treecode based on barycentric Hermite interpolation for electrostatic particle interactions
Keywords for this article
Avascular solid tumor growth;
Sharp interface model;
Boundary integral method;
Stokes-flow;
Darcy-flow;
Elastic membrane;
Moving boundary problems
Creative Commons
BY 4.0
Articles in the same Issue
- Special Issue: Biomolecular data modeling and mining.
- AngularQA: Protein Model Quality Assessment with LSTM Networks
- A study on discrete and discrete fractional pharmacokinetics-pharmacodynamics models for tumor growth and anti-cancer effects
- Nonlinear simulation of an elastic tumor-host interface
- Towards an understanding of RNA structural modalities: a riboswitch case study
- Special Issue Develop. Appl. Novel Meth. Comput. Biol.
- Using computational approaches to study dengue virus capsid assembly
- Thermal Response in Cellulose Iβ Based on Molecular Dynamics
- Analyzing high dimensional correlated data using feature ranking and classifiers
- CBSF: A New Empirical Scoring Function for Docking Parameterized by Weights of Neural Network
- Special Issue MMBB
- A treecode based on barycentric Hermite interpolation for electrostatic particle interactions