Shinichiro Ota
Yamaguchi University
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Publication
Featured researches published by Shinichiro Ota.
ASME 2008 International Mechanical Engineering Congress and Exposition | 2008
Shinichiro Ota; Toshitaka Yasuda; Takashi Saito
Arteriosclerosis is such as phenomena hardening of arteries, with thickening and loss of elasticity. Previous indexes include effect of geometric and mechanical factors as the radius, the wall thickness and mechanical properties of arteries. In this study, we proposed viscoelasticity indexes formulated by thin cylindrical shell theory estimated dynamic strain, and this index was independent of wall thickness and radius of arterial vessels. To confirm the validity of these indexes, we evaluated the parameters of viscoelasticity using the latex tube with different wall thickness of blood vessel model. We measured a radius of the latex tube and an inner pressure maintained by a pulsatile pump in a mock circuit filled with the water. Estimating the parameters of elasticity using these measured values, we concluded that a proposal index was independent of the wall thickness of the artery.Copyright
Transactions of the Japan Society of Mechanical Engineers. C | 2012
Shinichiro Ota; Shuji Nishiyama
The Proceedings of the Dynamics & Design Conference | 2011
Shinichiro Ota; Shuji Nishiyama
Transactions of the Japan Society of Mechanical Engineers. C | 2008
Shinichiro Ota; Toshitaka Yasuda; Takashi Saito
Ergonomics | 2015
Taiki Shinohara; Shinichiro Ota; Shuji Nishiyama
The Proceedings of the Transportation and Logistics Conference | 2014
Hiroshi Nakaoka; Shuji Nishiyama; Shinichiro Ota
The Proceedings of Conference of Chugoku-Shikoku Branch | 2014
Hideaki Oyama; Shuji Nishiyama; Shinichiro Ota
The Proceedings of the Transportation and Logistics Conference | 2013
Katsuhiro Ishitobi; Shuji Nishiyama; Shinichiro Ota
The Proceedings of Conference of Chugoku-Shikoku Branch | 2013
Hideaki Oyama; Shuji Nishiyama; Shinichiro Ota
The Proceedings of the Dynamics & Design Conference | 2012
Shinichiro Ota; Shuji Nishiyama