Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 1 Similar Profiles
Muscle Engineering & Materials Science
Bone Engineering & Materials Science
Mathematical models Engineering & Materials Science
Stress concentration Engineering & Materials Science
Ligaments Engineering & Materials Science
Mechanical properties Engineering & Materials Science
Accidents Engineering & Materials Science
Constitutive models Engineering & Materials Science

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Research Output 1997 2017

  • 156 Citations
  • 6 h-Index
  • 56 Article
  • 5 Chapter
  • 3 Conference contribution

Theoretical mechanism of temporary renal function improvement after abdominal aortic aneurysm surgery

Hoshina, K., Akai, T., Ohshima, M., Watanabe, T. & Yamamoto, S. 2017 In : Medicine (United States). 96, 30, e7428

Research output: Research - peer-reviewArticle

Biomechanical analysis of an aortic aneurysm model and its clinical application to thoracic aortic aneurysms for defining "saccular" aneurysms

Akai, T., Hoshina, K., Yamamoto, S., Takeuchi, H., Nemoto, Y., Ohshima, M., Shigematsu, K., Miyata, T., Yamauchi, H., Ono, M. & Watanabe, T. 2015 Jan 19 In : Journal of the American Heart Association. 4, 1, p. e001547

Research output: Research - peer-reviewArticle

1 Citations

Development of an image-based modeling system to investigate evolutional geometric changes of a stent graft in an abdominal aortic aneurysm

Kobayashi, M., Hoshina, K., Yamamoto, S., Nemoto, Y., Akai, T., Shigematsu, K., Watanabe, T. & Ohshima, M. 2015 Jun 9 In : Circulation Journal. 79, 7, p. 1534-1541 8 p.

Research output: Research - peer-reviewArticle

Evaluation of mechanical properties of skeletal muscle with strain injury

Ito, D., Yamamoto, S., Tanaka, E., Mizuno, K., Hitosugi, M. & Tokudome, S. 2012 In : Journal of Biomechanical Science and Engineering. 7, 2, p. 156-167 12 p.

Research output: Research - peer-reviewArticle

Muscle
Mechanical properties
Unloading
Energy dissipation
Chemical activation

Strong coupled fluid-structure interaction simulation of cerebrovascular system using multi-scale model

Katagiri, K., Krdey, A., Yamamoto, S. & Oshima, M. 2012 ASME 2012 Summer Bioengineering Conference, SBC 2012. p. 835-836 2 p.

Research output: ResearchConference contribution

Fluid structure interaction