978 resultados para Cirugía dental


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Tesis (Maestría en Ciencias Odontológicas con especialidad en Periodoncia ) U.A.N.L.

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Tesis (Maestría en Ciencias Odontológicas con Especialidad en Ortodoncia) U.A.N.L.

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Tesis (Maestría en Ciencias Odontológicas con Especialidad en Periodoncia) U.A.N.L.

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Tesis (Maestría en Ciencias Odontológicas con Especialidad en Periodoncia) U.A.N.L.

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[Tesis] ( Maestría en Ciencias Odontológicas con Especialidad en Periodoncia ) U.A.N.L.

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[Tesis] ( Maestría en Ciencias Odontológicas con Especialidad en Periodoncia ) U.A.N.L.

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Tesis (Doctorado en Medicina) UANL

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Introducción: Presentamos a un paciente que recibió tratamiento radioterápico en la infancia por un retinoblastoma. Como principal secuela presenta una severa hipoplasia ósea hemifacial, alteración de la dentición y atrofia muscular. Se realiza cirugía correctora facial mediante distracción ósea, cirugía ortognática y lipoescultura facial con un resultado estético y funcional excelente y estable hasta el momento actual. Caso clínico: Varón de 15 años con hipoplasia témporo-parieto-frontal, orbitaria izquierda y del tercio medio facial con un plano oclusal inclinado, resalte de más de 25 mm y múltiples piezas dentales con microdoncia y rizólisis. A los 19 años, inicia ortodoncia prequirúrgica y la colocación de distractores tipo Zurich en el maxilar superior. Se consigue un avance maxilar de 25 mm. A los 21 años se realiza cirugía ortognática bimaxilar y lipoescultura facial. Resultados: Paciente con mejoría de la simetría facial, oclusión en clase I con plano oclusal alineado. Resultados estables hasta el momento actual, con 23 años. Continúa con ortodoncia posquirúrgica y rehabilitación dental. Discusión: Se obtuvo una buena consolidación, con una calidad ósea excelente desde el punto de vista clínico y radiológico, sin presentar complicaciones. Otro beneficio de la distracción es el efecto expansor de los tejidos blandos. La distracción ósea y la cirugía ortognática bimaxilar son métodos prometedores en la reconstrucción del territorio maxilofacial en pacientes radiados con una deformidad dentofacial como secuela oncológica.

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This paper demonstrates that in order to understand and design for interactions in complex work environments, a variety of representational artefacts must be developed and employed. A study was undertaken to explore the design of better interaction technologies to support patient record keeping in a dental surgery. The domain chosen is a challenging real context that exhibits problems that could potentially be solved by ubiquitous computing and multi-modal interaction technologies. Both transient and durable representations were used to develop design understandings. We describe the representations, the kinds of insights developed from the representations and the way that the multiple representations interact and carry forward in the design process.

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This paper reflects upon our attempts to bring a participatory design approach to design research into interfaces that better support dental practice. The project brought together design researchers, general and specialist dental practitioners, the CEO of a dental software company and, to a limited extent, dental patients. We explored the potential for deployment of speech and gesture technologies in the challenging and authentic context of dental practices. The paper describes the various motivations behind the project, the negotiation of access and the development of the participant relationships as seen from the researchers' perspectives. Conducting participatory design sessions with busy professionals demands preparation, improvisation, and clarity of purpose. The paper describes how we identified what went well and when to shift tactics. The contribution of the paper is in its description of what we learned in bringing participatory design principles to a project that spanned technical research interests, commercial objectives and placing demands upon the time of skilled professionals.

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This paper describes a series of design games, specifically aimed at exploring shifts in human agency in order to inform the design of context-aware applications. The games focused on understanding information handling issues in dental practice with participants from a university dental school playing an active role in the activities. Participatory design activities help participants to reveal potential implicit technical resources that can be presented explicitly in technologies in order to assist humans in managing their interactions with and amidst technical systems gracefully.

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Introduction During development and regeneration, odontogenesis and osteogenesis are initiated by a cascade of signals driven by several master regulatory genes. Methods In this study, we investigated the differential expression of 84 stem cell–related genes in dental pulp cells (DPCs) and periodontal ligament cells (PDLCs) undergoing odontogenic/osteogenic differentiation. Results Our results showed that, although there was considerable overlap, certain genes had more differential expression in PDLCs than in DPCs. CCND2, DLL1, and MME were the major upregulated genes in both PDLCs and DPCs, whereas KRT15 was the only gene significantly downregulated in PDLCs and DPCs in both odontogenic and osteogenic differentiation. Interestingly, a large number of regulatory genes in odontogenic and osteogenic differentiation interact or crosstalk via Notch, Wnt, transforming growth factor β (TGF-β)/bone morphogenic protein (BMP), and cadherin signaling pathways, such as the regulation of APC, DLL1, CCND2, BMP2, and CDH1. Using a rat dental pulp and periodontal defect model, the expression and distribution of both BMP2 and CDH1 have been verified for their spatial localization in dental pulp and periodontal tissue regeneration. Conclusions This study has generated an overview of stem cell–related gene expression in DPCs and PDLCs during odontogenic/osteogenic differentiation and revealed that these genes may interact through the Notch, Wnt, TGF-β/BMP, and cadherin signalling pathways to play a crucial role in determining the fate of dental derived cell and dental tissue regeneration. These findings provided a new insight into the molecular mechanisms of the dental tissue mineralization and regeneration