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Table of Contents
1. Morphological and Functional Characteristics of Blood and Lymphatic Vessels
2. The Heart: The Engine in the Center of the Vascular System
3. Regulation of Tissue Perfusion and Exchange of Solutes, Macromolecules, and Water between Blood Vessels and the Interstitial Space
4. Endothelial Cells: Function and Dysfunction
5. Vascular Smooth muscle cells: Regulation of Vasoconstriction and Vasodilation
6. Embryonic Development of the Cardiovascular System
7. Cellular and Molecular Mechanisms of Vasculogenesis, Angiogenesis, and Lymphangiogenesis
8. Mechanisms of Hemostasis: Contribution of Platelets, Coagulation Factors, and the Vessel Wall
9. Biologically active lipids in Vascular Biology
10. Atherosclerosis
11. Venous Thromboembolism
12. Genetics of Vascular Diseases
13. Animal Models in Cardio-Vascular Biology
14. Endothelial Cell Isolation and Manipulation
15. In vitro Assays Used to Analyse Vascular Cell Functions
16. The Porcine Coronary Artery Ring Myograph System
17. Proteomics in Vascular Biology.
2. The Heart: The Engine in the Center of the Vascular System
3. Regulation of Tissue Perfusion and Exchange of Solutes, Macromolecules, and Water between Blood Vessels and the Interstitial Space
4. Endothelial Cells: Function and Dysfunction
5. Vascular Smooth muscle cells: Regulation of Vasoconstriction and Vasodilation
6. Embryonic Development of the Cardiovascular System
7. Cellular and Molecular Mechanisms of Vasculogenesis, Angiogenesis, and Lymphangiogenesis
8. Mechanisms of Hemostasis: Contribution of Platelets, Coagulation Factors, and the Vessel Wall
9. Biologically active lipids in Vascular Biology
10. Atherosclerosis
11. Venous Thromboembolism
12. Genetics of Vascular Diseases
13. Animal Models in Cardio-Vascular Biology
14. Endothelial Cell Isolation and Manipulation
15. In vitro Assays Used to Analyse Vascular Cell Functions
16. The Porcine Coronary Artery Ring Myograph System
17. Proteomics in Vascular Biology.