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Dive into the research topics where Yixiang Feng is active.

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Featured researches published by Yixiang Feng.


international conference of the ieee engineering in medicine and biology society | 2005

A Model-based Numerical Analysis in the Early Development of Intracranial Aneurysms

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi

Hemodynamic stresses are known to degenerate the arterial wall and be involved in the pathogenesis of intracranial aneurysm formation and development. The present study simulates the formation and growth of aneurysms by focusing on the interplay between the wall shear stress, degeneration of the mechanical wall properties, and the wall deformation. We construct numerical aneurysm models arisen from both straight and curved arteries, and we hypothesize that high local wall shear stress larger than a certain threshold value will lead to a linear decrease in the mechanical property of the vessel wall. The degeneration of vessel wall leads to wall deformation and redistribution of the wall shear stress, which in turn leads to further degeneration of the wall. Development of aneurysm is observed in both the straight and curved models. In the straight model, the growth of aneurysm is small and mainly at the distal neck region, and the aneurysm stops growing after several steps. In contrast, in the curved model, the aneurysm continues to grow in height and width. Our computer simulation shows that even if the wall shear stress inside a saccular aneurysm is low, aneurysm development can occur due to degeneration of the wall distal and proximal to the aneurysm. The interaction between the geometry change and the wall degeneration is key to the development of aneurysms. The method demonstrates the potential utility of model-based numerical methods in the investigation of developmental biology of intracranial aneurysms


Technology and Health Care | 2005

The application of computer simulation in the genesis and development of intracranial aneurysms

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi


Journal of Biomechanical Science and Engineering | 2008

A Rule-Based Computational Study on the Early Progression of Intracranial Aneurysms Using Fluid-Structure Interaction: Comparison between Straight Model and Curved Model

Yixiang Feng; Shigeo Wada; Takuji Ishikawa; Ken-ichi Tsubota; Takami Yamaguchi


Jsme International Journal Series C-mechanical Systems Machine Elements and Manufacturing | 2004

Growth of Intracranial Aneurysms Arised from Curved Vessels under the Influence of Elevated Wall Shear Stress ─ A Computer Simulation Study

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi


Archive | 2012

A Computational Study on the Possibility of the Initialization and Development of Intracranial Aneurysms Considering Biofluid and Biosolid Mechanics

Yixiang Feng; Shigeo Wada; Takami Yamaguchi


The Proceedings of The Computational Mechanics Conference | 2006

530 Rule-Based Simulation for Prediction of the Development of Aneurysm

Shigeo Wada; Yixiang Feng; Masanori Nakamura; Takami Yamaguchi


Proceedings of the Final Symposium of the Tohoku University 21st Century Center of Excellence Program | 2006

A COMPUTER SIMULATION STUDY ON THE EARLY PROGRESSION OF INTRACRANIAL ANEURYSMS: A COMPARISON BETWEEN STRAIGHT MODEL AND CURVED MODEL

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi


Proceedings of the JSME Bioengineering Conference and Seminar | 2005

529 Aneurysm Initiation and Development as a Result of Elevated Hemodynamic Stresses

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi


The proceedings of the JSME annual meeting | 2004

Computational analysis of the growth of aneurysm caused by multiple mechanical factors

Shigeo Wada; Yixiang Feng; Ken-ichi Tsubota


The Proceedings of the Asian Pacific Conference on Biomechanics : emerging science and technology in biomechanics 2004.1 | 2004

A Computer Simulation on the Growth of Intracranial Aneurysms Arising From a Straight Artery(Cardiovascular flow Simulation)

Yixiang Feng; Shigeo Wada; Ken-ichi Tsubota; Takami Yamaguchi

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Takami Yamaguchi

Nagoya Institute of Technology

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