Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arteriogenesis). Because of its prominent role in atherosclerosis, shear stress has gained particular attention, but other factors such as circumferential stretch are equally important to maintain the integrity and to (re) model the vascular network. While these haemodynamic forces are crucial determinants of the appearance and the structure of the vasculature, they are in turn subjected to structural changes in the blood vessels, such as an increased arterial stiffness in chronic arterial hypertension and ageing. This results in an interplay between the various forces (biomechanical forces) and the involved vascular elements. Although many molecular ...
The role of mechanical forces is emerging as a new player in the pathophysiologic programming of the...
The leading cause of death in Western countries is cardiovascular disease with over 1 million people...
In this chapter, we discuss how biomechanical forces influence vascular design. We will focus on the...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
AbstractThe following extended abstracts were presented at the Research Initiatives in Vascular Dise...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Purpose of reviewBlood flow is intimately linked with cardiovascular development, repair and dysfunc...
The leading cause of death in Western countries is cardiovascular disease with over 1 million people...
Arteries and veins are permanently exposed to hemody-namic forces because of the pulsatile nature of...
The role of mechanical forces is emerging as a new player in the pathophysiologic programming of the...
The leading cause of death in Western countries is cardiovascular disease with over 1 million people...
In this chapter, we discuss how biomechanical forces influence vascular design. We will focus on the...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Haemodynamic factors influence all forms of vascular growth (vasculogenesis, angiogenesis, arterioge...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
AbstractThe following extended abstracts were presented at the Research Initiatives in Vascular Dise...
Blood vessels are exposed to multiple mechanical forces that are exerted on the vessel wall (radial,...
Purpose of reviewBlood flow is intimately linked with cardiovascular development, repair and dysfunc...
The leading cause of death in Western countries is cardiovascular disease with over 1 million people...
Arteries and veins are permanently exposed to hemody-namic forces because of the pulsatile nature of...
The role of mechanical forces is emerging as a new player in the pathophysiologic programming of the...
The leading cause of death in Western countries is cardiovascular disease with over 1 million people...
In this chapter, we discuss how biomechanical forces influence vascular design. We will focus on the...