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Biomechanical Characterization of Ascending Aortic Aneurysms
- Source :
- Biomechanics and modeling in mechanobiology. 16(2)
- Publication Year :
- 2016
-
Abstract
- Ascending thoracic aortic aneurysms (ATAAs) are a silent disease, ultimately leading to dissection or rupture of the arterial wall. There is a growing consensus that diameter information is insufficient to assess rupture risk, whereas wall stress and strength provide a more reliable estimate. The latter parameters cannot be measured directly and must be inferred through biomechanical assessment, requiring a thorough knowledge of the mechanical behaviour of the tissue. However, for healthy and aneurysmal ascending aortic tissues, this knowledge remains scarce. This study provides the geometrical and mechanical properties of the ATAA of six patients with unprecedented detail. Prior to their ATAA repair, pressure and diameter were acquired non-invasively, from which the distensibility coefficient, pressure–strain modulus and wall stress were calculated. Uniaxial tensile tests on the resected tissue yielded ultimate stress and stretch values. Parameters for the Holzapfel–Gasser–Ogden material model were estimated based on the pre-operative pressure–diameter data and the post-operative stress–stretch curves from planar biaxial tensile tests. Our results confirmed that mechanical or geometrical information alone cannot provide sufficient rupture risk estimation. The ratio of physiological to ultimate wall stress seems a more promising parameter. However, wall stress estimation suffers from uncertainties in wall thickness measurement, for which our results show large variability, between patients but also between measurement methods. Our results also show a large strength variability, a value which cannot be measured non-invasively. Future work should therefore be directed towards improved accuracy of wall thickness estimation, but also towards the large-scale collection of ATAA wall strength data. ispartof: Biomechanics and Modeling in Mechanobiology vol:16 issue:2 pages:705-720 ispartof: location:Germany status: published
- Subjects :
- Materials science
0206 medical engineering
Soft Tisse Biomechanics
Modulus
02 engineering and technology
Dissection (medical)
030204 cardiovascular system & hematology
Models, Biological
Biomechanical Phenomena
Material properties
03 medical and health sciences
Wall stress
0302 clinical medicine
Rupture risk
medicine.artery
Ultimate tensile strength
medicine
Pressure
Humans
Elastic modulus
Aorta
Aortic Aneurysm, Thoracic
Ascending aortic aneurysm
Mechanical Engineering
medicine.disease
020601 biomedical engineering
In vivo pressure–diameter measurements
Modeling and Simulation
Stress, Mechanical
Planar biaxial testing
Biotechnology
Biomedical engineering
Subjects
Details
- ISSN :
- 16177940
- Volume :
- 16
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Biomechanics and modeling in mechanobiology
- Accession number :
- edsair.doi.dedup.....90abe2b1918e6e80daa2123a5291a5b5