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Titlebook: Cardiovascular Biomechanics; Peter R. Hoskins,Patricia V. Lawford,Barry J. Doyl Textbook 2017 Springer Nature Switzerland AG 2017 Cardiova

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Penetration Logging Methods and Equipmenthe cardiovascular system. For example, arterial tissue stiffens with age and the most conclusive way to measure stiffness is through mechanical testing. This chapter will describe some of the methods used to measure mechanical properties of cardiovascular tissue both in the laboratory and in vivo us
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Springer Series in Chemical PhysicsAn understanding of the functioning of the cardiovascular system draws heavily on principles of fluid flow and of the elastic behaviour of tissues. Indeed, much of the cardiovascular system consists of a fluid (blood), flowing in elastic tubes (arteries and veins). This chapter will introduce basic principles of fluid flow and of solid mechanics.
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High-Temperature Plasma Edge DiagnosticsThis chapter will explore the biomechanics of the cardiovascular system as a whole. Other chapters discuss in more detail the biomechanics of cardiovascular system components, including the heart, arteries, veins and the microcirculation.
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NIFS DATABASE and Cooperation with IAEA DCNBlood is the fluid which flows in the cardiovascular system. It is, however, not a pure fluid but rather a suspension of a number of different particles (cells, cell fragments and macromolecules) in a fluid base. This chapter explores the fluid behaviour of blood including the impact of the particles on this behaviour.
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NIFS DATABASE and Cooperation with IAEA DCNThis chapter will explore basic biomechanics of arteries concentrating on pressure, flow and stiffness. Here the emphasis will be on normal function. Abnormal function and disease will be considered in later chapters. In the appendix at the end of the chapter is a table of the values of key quantities in different arteries.
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Studies of Intracellular Angiotensin II,A brief discussion will be presented on the rationale for design and use of flow phantoms. This underpins the remainder of the chapter, however the reader may wish to return to this section once specific examples of flow phantoms have been described.
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