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      Plastic Surgery Applications Using Three-Dimensional Planning and Computer-Assisted Design and Manufacturing :

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          Cranial reconstruction: 3D biomodel and custom-built implant created using additive manufacturing.

          Additive manufacturing (AM) technology from engineering has helped to achieve several advances in the medical field, particularly as far as fabrication of implants is concerned. The use of AM has made it possible to carry out surgical planning and simulation using a three-dimensional physical model which accurately represents the patient's anatomy. AM technology enables the production of models and implants directly from a 3D virtual model, facilitating surgical procedures and reducing risks. Furthermore, AM has been used to produce implants designed for individual patients in areas of medicine such as craniomaxillofacial surgery, with optimal size, shape and mechanical properties. This work presents AM technologies which were applied to design and fabricate a biomodel and customized implant for the surgical reconstruction of a large cranial defect. A series of computed tomography data was obtained and software was used to extract the cranial geometry. The protocol presented was used to create an anatomic biomodel of the bone defect for surgical planning and, finally, the design and manufacture of the patient-specific implant.
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            Is Open Access

            3D digital stereophotogrammetry: a practical guide to facial image acquisition

            The use of 3D surface imaging technology is becoming increasingly common in craniofacial clinics and research centers. Due to fast capture speeds and ease of use, 3D digital stereophotogrammetry is quickly becoming the preferred facial surface imaging modality. These systems can serve as an unparalleled tool for craniofacial surgeons, proving an objective digital archive of the patient's face without exposure to radiation. Acquiring consistent high-quality 3D facial captures requires planning and knowledge of the limitations of these devices. Currently, there are few resources available to help new users of this technology with the challenges they will inevitably confront. To address this deficit, this report will highlight a number of common issues that can interfere with the 3D capture process and offer practical solutions to optimize image quality.
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              Comparison of three-dimensional surface-imaging systems.

              In recent decades, three-dimensional (3D) surface-imaging technologies have gained popularity worldwide, but because most published articles that mention them are technical, clinicians often have difficulties gaining a proper understanding of them. This article aims to provide the reader with relevant information on 3D surface-imaging systems. In it, we compare the most recent technologies to reveal their differences.
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                Author and article information

                Journal
                Plastic and Reconstructive Surgery
                Plastic and Reconstructive Surgery
                Ovid Technologies (Wolters Kluwer Health)
                0032-1052
                2016
                March 2016
                : 137
                : 3
                : 603e-616e
                Article
                10.1097/01.prs.0000479970.22181.53
                3a6caa79-428d-48c1-82ff-3511aa2e14bf
                © 2016
                History

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