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Publications by Toshiaki HISADA
A Study on Mechanical Model of Soft Tissues by Nonlinear Finite Element Analysis Based on Biphasic Theory
Transactions of the Japan Society of Mechanical Engineers Series A
Finite Element Analysis for Large Deformation Frictional Contact Problems With Finite Sliding.
Transactions of the Japan Society of Mechanical Engineers Series A
Related publications
A Simulation Study on Nonlinear Sound Propagation by Finite Element Approach.
Journal of the Acoustical Society of Japan (E)
A Spectral Finite Element Model for Vibration Analysis of a Beam Based on General Higher-Order Theory
Shock and Vibration
Mechanics of Materials
Geotechnical Engineering
Condensed Matter Physics
Mechanical Engineering
Civil
Engineering Geology
Structural Engineering
A Comparative Study on the Mechanical Behavior of Intervertebral Disc Using Hyperelastic Finite Element Model
Technology and Health Care
Information Systems
Health Informatics
Biomaterials
Medicine
Bioengineering
Biophysics
Biomedical Engineering
NiftySim: A GPU-based Nonlinear Finite Element Package for Simulation of Soft Tissue Biomechanics
International journal of computer assisted radiology and surgery
Radiology
Nuclear Medicine
Computer Graphics
Pattern Recognition
Health Informatics
Computer Vision
Computer Science Applications
Computer-Aided Design
Imaging
Medicine
Surgery
Biomedical Engineering
Study on the Stability of Embankment With Plate Anchors on Soft Ground by Using Non-Linear Finite Element Analysis.
Doboku Gakkai Ronbunshu
Nonlinear Finite Element Analysis by Progressive Mesh Refinement.
Transactions of the Japan Society of Mechanical Engineers Series A
Natural Frequency Sensitivity Analysis of a Road Model Based on the Finite Element Method
Journal of Engineering Science and Technology Review
Engineering
Accommodation of the Human Lens Capsule Using a Finite Element Model Based on Nonlinear Regionally Anisotropic Biomembranes
Computer Methods in Biomechanics and Biomedical Engineering
Medicine
Bioengineering
Computer Science Applications
Biomedical Engineering
Human-Computer Interaction
Finite Element Analysis of the Creep Damage Process Based on Anisotropic Creep Damage Theory.
Transactions of the Japan Society of Mechanical Engineers Series A