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Mechanobiology of Arterial Hypertension
Cor de Wit
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Corresponding author for this work
Institute of Physiology
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Medicine and Dentistry
Arterial Wall Thickening
50%
Blood Flow
50%
Blood Vessel Tone
100%
Capillary Pressure
50%
Hemodynamic
100%
Homeostasis
50%
Hyperbarism
50%
Hypertension
100%
Ligation
100%
Resistance Vessel
50%
Transmural Pressure
50%
Vascular Resistance
50%
Vascular System
50%
Immunology and Microbiology
Artery
100%
Artery Wall
33%
Blood Vessel Tone
66%
Capillary Pressure
33%
Hemodynamic
66%
Homeostasis
33%
Mechanical Stress
33%
Pulse Wave
66%
Shear Stress
100%
Vascular Resistance
33%
Biochemistry, Genetics and Molecular Biology
Blood Flow
33%
Hemodynamic
66%
Homeostasis
33%
Pulse Wave
66%
Shear Stress
100%
Vascular Resistance
33%
Wall Stress
100%
Engineering
Circumferential
33%
Frictional Pressure Loss
33%
Mechanical Force
33%
Pressure Head
33%
Pressure Increase
33%
Wall Shear Stress
100%
Wave Reflection
33%
Wave Velocity
33%