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Publications by Michael Bajka
Pathology Growth Model Based on Particles
Lecture Notes in Computer Science
Computer Science
Theoretical Computer Science
Generation of Pathologies for Surgical Training Simulators
Lecture Notes in Computer Science
Computer Science
Theoretical Computer Science
Related publications
A Magnetosphere Model Based on Two Zones of Precipitating Energetic Particles
Journal of Geophysical Research
Geochemistry
Space
Planetary Sciences
Oceanography
Paleontology
Petrology
Soil Science
Forestry
Atmospheric Science
Ecology
Geophysics
Aquatic Science
Earth
Earth-Surface Processes
Planetary Science
Technology
Water Science
Growth Model Induced by a Random Walk of Particles
Journal of Physics A: Mathematical and General
Dynamical Model of Elementary Particles Based on an Analogy With Superconductivity. I
Physical Review
CPM: A Deformable Model for Shape Recovery and Segmentation Based on Charged Particles
IEEE Transactions on Pattern Analysis and Machine Intelligence
Pattern Recognition
Applied Mathematics
Computer Vision
Mathematics
Computational Theory
Artificial Intelligence
Software
Application of Damage Model Based on Void Growth Analysis to Ductile Crack Growth Simulation
Yosetsu Gakkai Ronbunshu/Quarterly Journal of the Japan Welding Society
Mechanics of Materials
Surfaces
Alloys
Mechanical Engineering
Metals
Films
Coatings
Laparoscopic Subperitoneal Injection of Chemo-Loaded Particles Lowers Tumor Growth on a Rabbit Model of Peritoneal Carcinomatosis
Tumor Biology
Medicine
Cancer Research
A Model to Predict Liquid Bridge Formation Between Wet Particles Based on Direct Numerical Simulations
AICHE Journal
Biotechnology
Environmental Engineering
Chemical Engineering
Analysis of Economic Sustainable Growth Based on Economic Ethics System Model
MATEC Web of Conferences
Materials Science
Engineering
Chemistry
Minimal Model for Acoustic Forces on Brownian Particles
Physical Review E