25 results on '"Paskaleva, Anastassia"'
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2. Evaluation of Occupant Kinematics and Kinetics during Moderate Severity Simulated Frontal Impacts with and without Frontal Airbag Deployment
3. Disturbed Flow Promotes Arterial Stiffening Through Thrombospondin-1
4. A study of the anisotropy and tension/compression behavior of human cervical tissue
5. Mechanical and structural analysis of the pulmonary valve in congenital heart defects: A presentation of two case studies
6. Vaginal Balloon Catheterization and Elastase Contractility from Smooth muscle regional contribution to vaginal wall function
7. THE BIOMECHANICS OF CERCLAGE PLACEMENT: THE EFFECT OF CERCLAGE POSITION AND STRESS RELAXATION ON CERVICAL STRESS: 51
8. THE BIOMECHANICS OF CERVICAL FUNNELING: THE EFFECT OF STROMA PROPERTIES, ANATOMIC GEOMETRY AND PELVIC FORCES ON FUNNEL FORMATION: 36
9. Smooth muscle regional contribution to vaginal wall function
10. Comparative mechanical, morphological, and microstructural characterization of porcine mitral and tricuspid leaflets and chordae tendineae
11. A safe, low-cost, easy-to-use 3D camera platform to assess risk of obstructed labor due to cephalopelvic disproportion
12. Biomechanical properties of the thoracic aorta in Marfan patients
13. Abstract 515: Comparison of Aging and Disturbed Flow Effects on Arterial Wall Biomechanics
14. A safe, low-cost, easy-to-use 3D camera platform to assess risk of obstructed labor due to cephalopelvic disproportion.
15. Smooth Muscle-Targeted Overexpression of Peroxisome Proliferator Activated Receptor-γ Disrupts Vascular Wall Structure and Function
16. Disturbed Flow Promotes Arterial Stiffening Through Thrombospondin-1.
17. Smooth muscle‐targeted overexpression of peroxisome proliferator‐activated receptor gamma disrupts vascular wall structure and function (866.4)
18. Biomechanics of cervical function in pregnancy : case of cervical insufficiency
19. The Anisotropy and Tension/Compression Behavior of Human Cervical Tissue
20. A Study of the An isotropy and Tension/Compression Behavior of Human Cervical Tissue.
21. Scanning Actuator Guidance Scheme in a 1-D Thermal Manufacturing Process.
22. The biomechanics of cervical anatomy: The effect of cervical length and orientation on cervical stress
23. The effect of uterine volume, uterine pressure and maternal position on cervical stress: The biomechanics of common static loads
24. The connection between uterine contractions and cervical dilation: The biomechanics of cervical deformation
25. The biomechanics of cerclage placement: The effect of cerclage position and stress relaxation on cervical stress
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