Pages that link to "Item:Q2080434"
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The following pages link to A mathematical model for bone cell population dynamics of fracture healing considering the effect of energy dissipation (Q2080434):
Displaying 11 items.
- A mathematical model of cortical bone remodeling at cellular level under mechanical stimulus (Q315448) (← links)
- Mathematical modelling of the mechanical properties of callus restoration (Q323772) (← links)
- A novel coupled system of non-local integro-differential equations modelling Young's modulus evolution, nutrients' supply and consumption during bone fracture healing (Q518953) (← links)
- Modeling progressive damage accumulation in bone remodeling explains the thermodynamic basis of bone resorption by overloading (Q829275) (← links)
- A mathematical model of the process of ligament repair: effect of cold therapy and mechanical stress (Q890716) (← links)
- Mathematical model of bone regenerate tissue obtained as a result of bone growth under tension in an external fixation apparatus (Q1280531) (← links)
- A mechano-regulatory bone-healing model incorporating cell-phenotype specific activity (Q1794465) (← links)
- Determining the most important cellular characteristics for fracture healing using design of experiments methods (Q1798094) (← links)
- Influence of fracture gap size on the pattern of long bone healing: a computational study (Q2196756) (← links)
- A mathematical model of skeletal muscle regeneration with upper body vibration (Q2207137) (← links)
- Influence of high-frequency cyclical stimulation on the bone fracture-healing process: mathematical and experimental models (Q2889090) (← links)