By Muhammad Ikman Ishak
This booklet exhibits computational finite point simulations to examine the energy of implant anchorage for intrasinus and extramaxillary techniques less than a variety of occlusal loading destinations and instructions. third-dimensional version of the craniofacial region surrounding the zone of curiosity, delicate tissue and framework are built utilizing computed tomography snapshot datasets. The zygomatic and traditional dental implants are modeled utilizing a standard computer-aided layout software program and positioned on the acceptable place. fabric homes are assigned accurately for the cortical, cancellous bones and implants with Masseter forces utilized on the zygomatic arch and occlusal loadings utilized at the framework surface.
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Additional resources for Biomechanics in Dentistry: Evaluation of Different Surgical Approaches to Treat Atrophic Maxilla Patients
The emergence of implant head is slightly in the palatal area Most of the surgical procedures involved are similar to that of intrasinus approach, except for the opening window creation to the maxillary sinus wall and sinus membrane integrity consideration. Moreover, the path of implant insertion is also different, in which the implant body anchors in an extrasinus path, and it should preferably engage the lateral wall of maxillary sinus before penetrating the zygoma arch . The implant body could be completely or partially outside the sinus cavity.
It is essential to know that the accuracy of FEA results with some assumptions could be significantly influenced. Among parameters that often being simplified are bone and implant detailed geometry, material properties, boundary conditions, loadings and bone-implant contact properties . The selection of element types is crucial for the finite element modelling particularly in dentistry field since it involves the construction of detailed and complex geometry. Tetrahedral and hexahedral are among the types of element that have been widely used.
The implant body has a higher tendency to slide if the shear force is applied. Among the forces, the shear force is the most unfavourable since it can highly cause destructive to implants and bone. In comparison, the compressive force typically should be dominant in implant prosthetic occlusion . Once the force exerts on the occlusal surface of prosthesis the mechanical stresses will be generated through the implant and restoration specifically at loadbearing system. The stresses are also produced within the surrounding bone tissues with the same magnitude but in the opposite direction.
Biomechanics in Dentistry: Evaluation of Different Surgical Approaches to Treat Atrophic Maxilla Patients by Muhammad Ikman Ishak