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Computer Methods in Biomechanics and Biomedical Engineering|October 30, 2004
Changes in the fabric and compliance tensors of cancellous bone due to trabecular surface remodeling, predicted by a digital image-based modelKen-Ichi Tsubota, Taiji AdachiJournal of Biomechanics|April 26, 2022
Blood cell distribution in small and large vessels: Effects of wall and rotating motion of red blood cellsKen-Ichi Tsubota, Kazuki NamiokaPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|April 7, 2010
Effect of the natural state of an elastic cellular membrane on tank-treading and tumbling motions of a single red blood cellKen-ichi Tsubota, Shigeo WadaMedical Engineering & Physics|May 31, 2022
Numerical simulation of the vascular structure dependence of blood flow in the kidneyWei Deng, Ken-Ichi TsubotaMedical Engineering & Physics|April 13, 2005
Spatial and temporal regulation of cancellous bone structure: characterization of a rate equation of trabecular surface remodelingKen-ichi Tsubota, Taiji AdachiMedical Engineering & Physics|July 27, 2026
Spatiotemporal dynamics of blood coagulation in medium-sized vessels: numerical insights into the effects of vessel walls and blood flowKen-Ichi Tsubota, Tsutomu TajikawaJournal of Biomechanics|November 26, 2002
Functional adaptation of cancellous bone in human proximal femur predicted by trabecular surface remodeling simulation toward uniform stress stateKen-ichi Tsubota, Taiji Adachi, Yoshihiro TomitaAnnals of Biomedical Engineering|June 12, 2003
Effects of a fixation screw on trabecular structural changes in a vertebral body predicted by remodeling simulationKen-ichi Tsubota, Taiji Adachi, Yoshihiro TomitaBiomechanics and Modeling in Mechanobiology|October 10, 2013
Elastic behavior of a red blood cell with the membrane's nonuniform natural state: equilibrium shape, motion transition under shear flow, and elongation during tank-treading motionKen-Ichi Tsubota, Shigeo Wada, Hao LiuComputer Methods and Programs in Biomedicine|August 2, 2006
Particle method for computer simulation of red blood cell motion in blood flowKen-ichi Tsubota, Shigeo Wada, Takami YamaguchiPageof 3