Course Contents
Comprehensive program covering biomechanics, biomaterials, medical devices, and computational methods for healthcare applications.
Principles governing forces and motion in biological systems.
Analysis of structures under static loading conditions.
Motion analysis of particles and rigid bodies.
Behavior of deformable solids under various loading conditions.
Mechanical behavior of solids and fluids as continuous media.
Core course applying mechanics to living systems.
Mechanics of biological fluids and flow systems.
Mechanical behavior of cells and cellular structures.
Mechanical properties of biological tissues.
Numerical simulation of biological structures.
Mechanics applied specifically to biological materials.
Dynamic response of biological systems.
Mechanical characterization of materials used in medicine.
Mechanical design principles for healthcare products.
Study of oscillatory systems in biomedical contexts.
Numerical methods for solving complex mechanics problems.
Simulation of interconnected rigid and flexible bodies.
Experimental methods for measuring mechanical behavior.
Interaction between mechanical forces and biological responses.
Mechanical response of soft biological tissues.