Dental Biomechanics by Arturo N. Natali

By Arturo N. Natali

Dental Biomechanics presents a accomplished, well timed, and wide-reaching survey of the correct elements of biomechanical research in the dental box. top the reader during the mechanical research of dental difficulties in dental implants, orthodontics, and ordinary teeth mechanics, this booklet covers an more and more very important and well known topic region. It additionally addresses a few modern discussions including:Hard and smooth tissue mechanicsRelief techniques utilizing computing device tomography, evaluate of picture processing innovations, and pre-surgical activityDental fabrics when it comes to implants, titanium forged units, metallurgic difficulties and implant floor treatmentsMechanical trying out tactics for reliability evaluate of dental devicesRelevant facets of medical perform almost about biomechanical problemsOrthodontic remedies relating to the mechanical features of orthodontic appliancesNumerical modeling in dental biomechanics, highlighting the relevance of this strategy for the research of dental problemsMechanics of materialsA distinctive booklet, Dental Biomechanics can be of curiosity to all bioengineers and clinicians with its presentation of a multidisciplinary method of dental biomechanics in accordance with mechanical, medical, and chemical-physical wisdom.

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Med. , Vol. 26, pp. 160–162, 1995. 1 INTRODUCTION This chapter presents an overview of the basic concepts of computer tomography and image processing in the development of virtual models. The tomographic image processing techniques addressed in this chapter are those used to develop software tools for surgical planning and to define numerical models for the prediction of biomechanical responses. A description of the basic principles of tomographic relief is given, from the physical, technological and computational points of view, recalling the fundamental works that represent the basic knowledge in this field.

Chen, Z. Wei and Y. Chao, Determination of modulus of elasticity of human periodontal membrane (in Chinese), J. West China Univ. Med. , Vol. 26, pp. 160–162, 1995. 1 INTRODUCTION This chapter presents an overview of the basic concepts of computer tomography and image processing in the development of virtual models. The tomographic image processing techniques addressed in this chapter are those used to develop software tools for surgical planning and to define numerical models for the prediction of biomechanical responses.

25 mm/min. Mandel et al. , 1986) measured the whole stress–strain curves, instead of just maximum stress before breaking, on human mandibular premolars and determined the elastic stiffness of the PDL from the gradient of shear stress–strain curve. 2 mm/min. 2 MPa), whereas other parameters, such as maximum shear stress and shear strain before breaking and the relative failure energy in shear, significantly varied along the root. Chiba and Komatsu (Chiba and Komatsu, 1993) found that stress–strain curves of the PDL strongly depend on the strain rate in a study using a wide range of deformation speeds.

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