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[Mathematics and Biosciences in Interaction] Single-Cell-Based Models in Biology and Medicine || Two-dimensional Multiscale Model of Cell Motion in a Chemotactic Field

✍ Scribed by Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A.


Book ID
120282721
Publisher
Birkhäuser Basel
Year
2007
Tongue
German
Weight
538 KB
Edition
2007
Category
Article
ISBN
3764381019

No coin nor oath required. For personal study only.

✦ Synopsis


many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each Point On The Cell Membrane. They Differ In The Level Of Detail That Defines The Cell Structure And Subsequently In The Number Of Individual Cells That The Model Can Incorporate.

this Volume Presents A Collection Of Mathematical And Computational Single-cell-based Models And Their Application. The Main Sections Cover Four General Model Groupings: Hybrid Cellular Automata, Cellular Potts, Lattice-free Cells, And Viscoelastic Cells. Each Section Is Introduced By A Discussion Of The Applicability Of The Particular Modelling Approach And Its Advantages And Disadvantages, Which Will Make The Book Suitable For Students Starting Research In Mathematical Biology As Well As Scientists Modelling Multicellular Processes.


📜 SIMILAR VOLUMES


[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 748 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P

[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 452 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P

[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 789 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P

[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 648 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P

[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 462 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P

[Mathematics and Biosciences in Interact
✍ Anderson, Alexander R. A.; Chaplain, Mark A. J.; Rejniak, Katarzyna A. 📂 Article 📅 2007 🏛 Birkhäuser Basel 🌐 German ⚖ 463 KB

many Different Single-cell-based Models Have Been Developed And Applied To Biological And Medical Problems. Computational Approaches Used Are Monte-carlo Simulations, Energy Minimisation Techniques, Volume Conservation Laws, Solutions Of The Equations Of Motion For Each Individual Cell Or For Each P