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1. Accurate adventitia reconstruction; significant or not in atherosclerotic plaque growth simulationsƒ A comparative study.

2. A Machine Learning Model for the prediction of the progression of carotid arterial stenoses.

3. Enhancing risk prediction capabilities in patients with carotid artery disease using a 2-level computational approach.

4. TAXINOMISIS: A cloud - based platform for risk profiling and patient specific management of the carotid artery disease.

5. Detection of Asymptomatic Carotid Artery Stenosis through Machine Learning.

6. Prediction of the atherosclerotic plaque development in carotid arteries; the effect of T-cells.

7. Computational modelling of Human Femur after Total Hip Arthroplasty.

8. A Machine Learning Model for the Identification of High risk Carotid Atherosclerotic Plaques.

9. Computational modeling of atherosclerotic plaque progression in carotid lesions with moderate degree of stenosis .

10. The TAXINOMISIS Project: A multidisciplinary approach for the development of a new risk stratification model for patients with asymptomatic carotid artery stenosis.

11. A deep learning oriented method for automated 3D reconstruction of carotid arterial trees from MR imaging.

12. A biomechanical study of the effect of weight loading conditions on the mechanical environment of the hip joint endoprosthesis.

13. Numerical evaluation of the mechanical environment of a fractured long bone for osteoporotic and non-osteoporotic subjects.

14. Numerical evaluation of the backward propagating acoustic field in healing long bones.

15. Evaluation of ultrasonic scattering for different cortical bone porosities and excitation frequencies: A numerical study.

16. Boundary element simulation of ultrasonic backscattering during the fracture healing process.

17. Ultrasound propagation in cortical bone: Axial transmission and backscattering simulations.

18. Computational modeling of ultrasonic backscattering to evaluate fracture healing.

19. Application of an effective medium theory for modeling ultrasound wave propagation in healing long bones.

20. Computational study of the influence of callus porosity on ultrasound propagation in healing bones.

21. Phase velocity and attenuation predictions of waves in cancellous bone using an iterative effective medium approximation.

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