Matrix formation in facial bones of the rat. [3H]-proline and [35S]-sulphate incorporation studies.
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Since 1869, bone lengthening has been pursued; when Langenbeck tried growing a shortened bone extremity utilizing for this an arteriovenous fistula in the thigh. At the beginning of this century, codovilla (1905) introduced bone lengthening methods for lower limbs.
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Aiming to verify the occurrence of alterations in certain skeletal structures in lepromatous face, 70 patients from the "Hospital Lauro de Souza Lima", were clinically and radiographically analysed through a longitudinal study with a 3 years interval: their average age was of 45.41 years and 48.41 years respectively for the first and second examinations.
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The evolution of computer technology has significantly improved the performances of three-dimensional reconstructions from Computed Tomographic images. The authors discuss the examination technique and the modalities of three-dimensional reconstruction based upon a new advanced workstation. This unit is based on a Sun Sparkstation linked with the main computer of the CT scanner. The workstation is extremely fast, the processing time for a high resolution three-dimensional image of the maxillofacial region being about 3 minutes. The scanning parameters, image reconstruction and visualization were investigated on cases of maxillofacial (mainly posttraumatic) conditions. The most important scanning parameters are slice thickness, table incrementation, dose, scan plane. Slice thickness and table incrementation are the parameters bearing the greatest influence on the quality of the three-dimensional images. Dose is also important but bears no influence on image quality: therefore it can be kept as low as possible to reduce patient exposure. The scanning plane has some minor effect; coronal images have some advantages over axial images but in many cases only axial images can be acquired. The reconstruction parameters are the threshold and the matrix. The threshold may range 70 to 300 HU but in most cases ranges 120 to 200 HU. An advantage offered by this system is that it allows threshold values to be changed after the reconstruction has been completed, without performing a new reconstruction. The visualization parameters include four rendering methods, i.e. the surface mode, the integral mode, the maximum intensity projection and the ray sum. The surface mode is the one yielding the best results for bones while the others are used for the reconstruction of soft tissues and vessels. The workstation enables the three-dimensional images to be processed with shading parameters, and to be modified with cut planes, disarticulation methods and other interactive methods.
The physiology of bone healing, regeneration, and bone transfer is discussed from the dual perspectives of basic physiology and the application to clinical situations of bone transfer. Recommendations are made regarding clinical applications for the site, orientation, and fixation of grated materials. Rationale for the use of vascularized transfers is presented.
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A rare case of multiple compound odontoma involving the facial bones and erupting into the oral cavity of a 15-year-old Nigerian girl is presented. The unacceptable facial appearance and the surgical approach used makes this case worth reporting.
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