The Experts below are selected from a list of 51 Experts worldwide ranked by ideXlab platform
Chavez Guardian, Shirley Jhasmin - One of the best experts on this subject based on the ideXlab platform.
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Análisis de elementos finitos en ortodoncia
'Universidad Inca Garcilaso de la Vega', 2018Co-Authors: Chavez Guardian, Shirley JhasminAbstract:Trabajo académicoThe predictability of the results of a dental movement induced at the structural level, has always been a concern in Orthodontics; this in order to provide patients with aesthetic results that do not harm their tissues and provide a harmonious and functional occlusion. This is how modern technology presents us to the analysis of finite elements as an additional tool for this purpose, allowing us to preview and understand intrastructurally what the changes could be at the dental, skeletal, and even the equipment to be used, resulting from the plan chosen orthopedic or dental treatment; the analysis of finite elements allows us to visualize what are the moments-forces of their charges and their consequences, either to use them in favor of a final objective or to seek a more ideal alternative treatment. The present work will address the main points of the process to reach a prediction close to reality, and understand how it affects the Orthodontic Biomechanics, as well as give us the current advantages and limitations.La predictibilidad de los resultados de un movimiento dental inducido a nivel estructural, siempre ha sido una preocupación en ortodoncia; esto en aras de brindar a los pacientes resultados estéticos que no ateten nocivamente sus tejidos y brinden una oclusión armónica y funcional. Es así, como la tecnología moderna nos presenta al análisis de elementos finitos como herramienta adicional para este fin, permitiendo previsualizar y entender de manera intraestructural cuales podrían ser los cambios a nivel dentoperiodontal, esqueletal y hasta de la aparatología a usar, resultantes del plan de tratamiento odontológico u ortopédico elegido; el análisis de elementos finitos nos permite visualizar cuales son los momentos-fuerzas de sus cargas y sus consecuencias, ya sea para usarlas a favor de un objetivo final o buscar un tratamiento alternativo más ideal. El presente trabajo abordará puntos resaltantes del proceso para alcanzar una predicción cercana a la realidad, y entender cómo es que afectan en la biomecánica ortodóntica, además nos brindará las ventajas y limitaciones actuales
Colque Jamachi, Vanesa Beatriz - One of the best experts on this subject based on the ideXlab platform.
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El análisis de elementos finitos en ortodoncia
'Universidad Inca Garcilaso de la Vega', 2019Co-Authors: Colque Jamachi, Vanesa BeatrizAbstract:Trabajo académicoIn clinical practice during Orthodontic treatment, it is important to evaluate the forces generated during treatment and evaluate the physiological response to these forces. The development of new technologies has allowed the use of finite element analysis in the field of research in Orthodontics and maxillofacial orthopedics. This with the use of computer programs that allow the digitalization of the images of the craniofacial complex and the dental structures. This paper describes the application of finite element analysis in Orthodontics, this analysis is based on the principle of virtual works that imitate exactly those of a real body; that is, in the representation of a body or structure by an assembly of subdivisions called elements, this representation allows a prediction close to reality, and understand how it is that forces such as those applied in protraction, disjunction, distalization, verticalization, intrusion affect in Orthodontic Biomechanics. The present study shows how this analysis provides quantitative and detailed data on the possible physiological reactions that can occur in the tissues after the application of an Orthodontic force, this has the advantage of being a non-invasive and precise method, which allows to anticipate the visualization of tissue responses by observing areas of stress created from Orthodontic mechanisms applied.En la práctica clínica durante el tratamiento ortodóntico, es importante evaluar las fuerzas que se generan durante el tratamiento y evaluar la respuesta fisiológica frente a esas fuerzas. El desarrollo de nuevas tecnologías ha permitido el uso del análisis de elementos finitos en el campo de investigación en ortodoncia y en la ortopedia maxilofacial. Esto con el uso de programas informáticos que permiten la digitalización de las imágenes del complejo cráneofacial y de las estructuras dentarias. El presente trabajo describe la aplicación del análisis de elementos finitos en ortodoncia, éste análisis se basa en el principio de los trabajos virtuales que imitan exactamente a los de un cuerpo real; es decir, en la representación de un cuerpo o estructura por un ensamble de subdivisiones llamadas elementos, esta representación permite una predicción cercana a la realidad, y entender cómo es que fuerzas como las que se aplican en la protracción, disyunción, distalización, verticalización, intrusión afectan en la biomecánica ortodóntica. El presente estudio muestra como este análisis proporciona datos cuantitativos y detallados sobre las posibles reacciones fisiológicas que pueden ocurrir en los tejidos posterior a la aplicación de una fuerza ortodóntica, ésta tiene la ventaja de ser un método no invasivo y preciso, que permite anticipar la visualización de las respuestas tisulares mediante la observación de áreas de estrés creadas a partir de mecanismos de ortodoncia aplicados
Vanashree Takane - One of the best experts on this subject based on the ideXlab platform.
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treatment of a transmigrated and an impacted mandibular canine along with missing maxillary central incisor a case report
Orthodontic Waves, 2019Co-Authors: Amit P Jaisinghani, Tejashri Pradhan, Kanoba M Keluskar, Vanashree TakaneAbstract:Abstract Introduction Treatment of a case with impacted canines is complex and numerous options are available ranging from disimpaction to forced eruption. Objective The objective of this case report was to describe the treatment of a 19-year-old male, with a skeletal Class II, dental Class II Division 1 malocclusion, prognathic maxilla, proclined maxillary incisors, with missing left maxillary central incisor and bilateral mandibular canine impaction. Methodology The Orthodontic treatment plan included forced eruption of the impacted canines and conversion of maxillary left lateral incisor to central incisor. Conclusion Proper diagnosis and implementation of Orthodontic Biomechanics can minimize the amount of prosthetic and surgical intervention needed in the management of transmigrated canine and smile designing.
Amit P Jaisinghani - One of the best experts on this subject based on the ideXlab platform.
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treatment of a transmigrated and an impacted mandibular canine along with missing maxillary central incisor a case report
Orthodontic Waves, 2019Co-Authors: Amit P Jaisinghani, Tejashri Pradhan, Kanoba M Keluskar, Vanashree TakaneAbstract:Abstract Introduction Treatment of a case with impacted canines is complex and numerous options are available ranging from disimpaction to forced eruption. Objective The objective of this case report was to describe the treatment of a 19-year-old male, with a skeletal Class II, dental Class II Division 1 malocclusion, prognathic maxilla, proclined maxillary incisors, with missing left maxillary central incisor and bilateral mandibular canine impaction. Methodology The Orthodontic treatment plan included forced eruption of the impacted canines and conversion of maxillary left lateral incisor to central incisor. Conclusion Proper diagnosis and implementation of Orthodontic Biomechanics can minimize the amount of prosthetic and surgical intervention needed in the management of transmigrated canine and smile designing.
Alexandre Moro - One of the best experts on this subject based on the ideXlab platform.
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Orthodontic treatment of ankylosed maxillary incisor through osteogenic distraction and simplified Biomechanics
Case Reports in Dentistry, 2019Co-Authors: Daniel Gheur Tocolini, Priscila De Oliveira Silva, Iduilton Grabowski, Julia Carelli, Nathaly D Morais, Gisele Maria Correr, Francielle Topolski, Alexandre MoroAbstract:Ankylosed teeth may have a significant esthetic and functional impact especially at the anterior segment of the upper arch. Treatment of ankylosed teeth is challenging. The objective of this case report is to describe a clinical case in which an ankylosed tooth was treated with the use of osteogenic distraction associated with simplified Orthodontic Biomechanics. A 17-year-old female Caucasian patient presented with a Class II malocclusion, severe maxillary dental crowding, moderate mandibular dental crowding, anterior open bite, upper midline deviation to the right, and upper right central incisor in infraocclusion due to ankylosis. Treatment involved the use of the ankylosed tooth as anchorage for the distalization of the right upper segment to correct the Class II malocclusion and to create space prior to surgery. After one week of surgical osteotomy, traction of the tooth and bone segment was initiated with the use of intermaxillary elastics. The ankylosed tooth was moved to the desired position. Bone formation and mucogingival tissue adaptation were observed. Thus, esthetic and functional improvement was achieved. Osteogenic distraction associated with simplified Orthodontic Biomechanics is an alternative to the treatment of ankylosed teeth which can replace the use of distractor screws, making treatment simpler and more accessible.