An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm

Martin Kroon, Gerhard Holzapfel

Research output: Contribution to conference(Old data) Lecture or PresentationResearch

Original languageEnglish
Publication statusPublished - 10 Mar 2008
Event11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues - Turin, Italy
Duration: 10 Mar 200814 Mar 2008

Conference

Conference11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues
CountryItaly
CityTurin
Period10/03/0814/03/08

Cite this

Kroon, M., & Holzapfel, G. (2008). An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm. 11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, Turin, Italy.

An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm. / Kroon, Martin; Holzapfel, Gerhard.

2008. 11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, Turin, Italy.

Research output: Contribution to conference(Old data) Lecture or PresentationResearch

Kroon, M & Holzapfel, G 2008, 'An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm' 11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, Turin, Italy, 10/03/08 - 14/03/08, .
Kroon M, Holzapfel G. An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm. 2008. 11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, Turin, Italy.
Kroon, Martin ; Holzapfel, Gerhard. / An inverse method to estimate the material parameters and wall stresses of a saccular cerebral aneurysm. 11th EUROMECH - MECAMAT conference: Mechanics of microstructured solids: cellular materials, fibre reinforced solids and soft tissues, Turin, Italy.
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