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Description
  • Biomechanics of elastic arteries is widely studied at present time. In contrast to the constitutive modeling of the aortic wall, little attention has been pained to mechanical properties of surrounding tissue. To fill this gap, uniaxial tensile tests with adipose tissue surrounding human abdominal aorta were conducted. Strongly nonlinear stress-strain relationship was observed. It was found that highly compliant response characterized with the initial elastic modulus about 2.16 kPa is exhibited approximately to engineering strain of 0.03. Initial linear response is followed by gradual stiffening. Tangential elastic modulus of about 500 kPa was observed at engineering strain of 0.11.
  • Biomechanics of elastic arteries is widely studied at present time. In contrast to the constitutive modeling of the aortic wall, little attention has been pained to mechanical properties of surrounding tissue. To fill this gap, uniaxial tensile tests with adipose tissue surrounding human abdominal aorta were conducted. Strongly nonlinear stress-strain relationship was observed. It was found that highly compliant response characterized with the initial elastic modulus about 2.16 kPa is exhibited approximately to engineering strain of 0.03. Initial linear response is followed by gradual stiffening. Tangential elastic modulus of about 500 kPa was observed at engineering strain of 0.11. (en)
Title
  • Uniaxial tensile test of perivascular adipose tissue
  • Uniaxial tensile test of perivascular adipose tissue (en)
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  • Uniaxial tensile test of perivascular adipose tissue
  • Uniaxial tensile test of perivascular adipose tissue (en)
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  • RIV/68407700:21220/14:00223895!RIV15-MSM-21220___
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  • RIV/68407700:21220/14:00223895
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  • Abdominal aorta; Elastic modulus; Perivascular tissue; Tensile test (en)
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  • [C0219704D072]
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  • Horný, Lukáš
  • Žitný, Rudolf
  • Voňavková, Tereza
  • Kulvajtová, M.
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  • 21220
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