Biomechanical role of peri-implant trabecular structures during vertical loading
暂无分享,去创建一个
N. Takano | Y. Ide | Y. Tamatsu | S. Abe | S. Matsunaga | T. Ohashi | K. Nakahara
[1] Oğuz Eraslan,et al. The effect of thread design on stress distribution in a solid screw implant: a 3D finite element analysis , 2010, Clinical Oral Investigations.
[2] Hui Zhu,et al. Measurement of the transverse strain tensor in the coronary arterial wall from clinical intravascular ultrasound images. , 2008, Journal of biomechanics.
[3] Cheng-Kung Cheng,et al. Influence of off-axis loading of an anterior maxillary implant: a 3-dimensional finite element analysis. , 2007, The International journal of oral & maxillofacial implants.
[4] Shuichi Nomura,et al. Biomechanical aspects of marginal bone resorption around osseointegrated implants: considerations based on a three-dimensional finite element analysis. , 2004, Clinical oral implants research.
[5] M. Klingensmith,et al. Patient Selection and Preparation , 2004 .
[6] Suk Wang Yoon,et al. Acoustic wave propagation in bovine cancellous bone: application of the Modified Biot-Attenborough model. , 2003, The Journal of the Acoustical Society of America.
[7] I Naert,et al. The influence of static and dynamic loading on marginal bone reactions around osseointegrated implants: an animal experimental study. , 2001, Clinical oral implants research.
[8] A. Parfitt. Osteonal and hemi‐osteonal remodeling: The spatial and temporal framework for signal traffic in adult human bone , 1994, Journal of cellular biochemistry.
[9] Roger Watson,et al. Tissue-integrated prostheses , 1985 .
[10] Liang Kong,et al. Selections of the cylinder implant neck taper and implant end fillet for optimal biomechanical properties: a three-dimensional finite element analysis. , 2008, Journal of biomechanics.
[11] Satoru Matsunaga,et al. The Influence of Bite Force on the Internal Structure of the Mandible through Implant—Three-dimensional and Mechanical Analysis Using Micro-CT and Finite Element Method— , 2008 .
[12] O. Miyakawa,et al. Peri-implant stress analysis in simulation models with or without trabecular bone structure. , 2006, The International journal of prosthodontics.
[13] P Rüegsegger,et al. Micro-tomographic imaging for the nondestructive evaluation of trabecular bone architecture. , 1997, Studies in health technology and informatics.
[14] P Rüegsegger,et al. The quality of trabecular bone evaluated with micro-computed tomography, FEA and mechanical testing. , 1997, Studies in health technology and informatics.
[15] C. Misch. Density of bone: effect on treatment plans, surgical approach, healing, and progressive boen loading. , 1990, The International journal of oral implantology : implantologist.
[16] Misch Ce. Density of bone: effect on treatment plans, surgical approach, healing, and progressive boen loading. , 1990 .
[17] H. Grootenboer,et al. Adaptive bone-remodeling theory applied to prosthetic-design analysis. , 1987, Journal of biomechanics.
[18] U. Lekholm,et al. Patient selection and preparation , 1985 .