Introduction to the Program

Gracias a este programa, conocerás las punteras técnicas que permiten acometer el diseño con Exocad de coronas provisionales”

A lo largo de la última década, se ha popularizado el empleo de la tecnología digital para acometer numerosas intervenciones odontológicas, entre las que destacan el diseño de piezas dentales, la colocación de ortodoncias o la inserción de implantes altamente funcionales. Su progresiva incursión ha permitido ofrecer una gran seguridad al paciente durante todo el proceso, así como garantizar unos excelentes resultados desde el punto de vista estético. Debido a los beneficios ofrecidos, conocer el funcionamiento de estas revolucionarias herramientas es esencial para el odontólogo que desea no verse rezagado con respecto a la evolución del sector.

Ante esta coyuntura, TECH ha apostado por crear esta titulación, por medio de la que el alumno profundizará en los aspectos más avanzados de la Digital Technology in Dentistry. A lo largo de su periplo académico, ahondará en las punteras aplicaciones de la fonogranulometría PIC en la oclusión dental o en las técnicas de interpretación de los datos cefalométricos digitales. De igual modo, identificará los protocolos de diseño con Exocad de incrustaciones o de coronas sobre implantes.

Gracias a que este programa se desarrolla a través de una modalidad 100% en línea, el profesional obtendrá la posibilidad de optimizar su aprendizaje sin la necesidad de ceñirse a incómodos horarios preestablecidos. Asimismo, esta titulación ha sido diseñada y elaborada por expertos de referencia en el campo de la Odontología Digital, quienes desempeñan sus funciones activamente en este campo. Por ello, todos los conocimientos que recibirá preservarán una completa actualización.

Detecta las técnicas para la interpretación de los datos cefalométricos digitales por medio de esta Postgraduate diploma”

Esta Postgraduate diploma en Digital Technology in Dentistry contiene el programa educativo más completo y actualizado del mercado. Sus características más destacadas son:

  • El desarrollo de casos prácticos presentados por expertos en Odontología Digital
  • Los contenidos gráficos, esquemáticos y eminentemente prácticos con los que está concebido recogen una información científica y práctica sobre aquellas disciplinas indispensables para el ejercicio profesional
  • Los ejercicios prácticos donde realizar el proceso de autoevaluación para mejorar el aprendizaje
  • Su especial hincapié en metodologías innovadoras 
  • Las lecciones teóricas, preguntas al experto, foros de discusión de temas controvertidos y trabajos de reflexión individual
  • La disponibilidad de acceso a los contenidos desde cualquier dispositivo fijo o portátil con conexión a internet

Estudia desde cualquier lugar del mundo y en el momento que desees gracias a la modalidad 100% en línea de esta titulación”

El programa incluye, en su cuadro docente, a profesionales del sector que vierten en esta capacitación la experiencia de su trabajo, además de reconocidos especialistas de sociedades de referencia y universidades de prestigio.

Su contenido multimedia, elaborado con la última tecnología educativa, permitirá al profesional un aprendizaje situado y contextual, es decir, un entorno simulado que proporcionará una capacitación inmersiva programada para entrenarse ante situaciones reales.

El diseño de este programa se centra en el Aprendizaje Basado en Problemas, mediante el cual el profesional deberá tratar de resolver las distintas situaciones de práctica profesional que se le planteen a lo largo del curso académico. Para ello, contará con la ayuda de un novedoso sistema de vídeos interactivos realizados por reconocidos expertos.

La metodología Relearning de este programa te permite aprender a tu propio ritmo desde la comodidad de tu hogar"

Obtén tu deseada actualización odontológica con las mayores facilidades de estudio del panorama pedagógico"

Syllabus

The syllabus of this program has been developed with the idea of providing the dentist with the most relevant and cutting-edge knowledge in Digital Technology in Dentistry. Its 3 very complete modules have a wide range of highly varied teaching materials, which are available in different textual and multimedia formats. Thanks to this, and by means of a 100% online methodology, you will obtain a completely enjoyable and individualized learning experience.

This syllabus has been designed by the best experts in Digital Dentistry to provide you with the most advanced teaching content in the field"

Module 1. Equipment digitization

1.1. Video Evolution

1.1.1. Why Be Digital
1.1.2. Multidisciplinary
1.1.3. Time/Expenses
1.1.4. Advantages/Costs

1.2. Digital Flow

1.2.1. File Types
1.2.2. Types of Meshes
1.2.3. Reliability
1.2.4. Comparison of Systems

1.3. Digital Camera and Cell Phone

1.3.1. Lighting Techniques in Dentistry
1.3.2. Clinical Dental Photography
1.3.3. Aesthetic Dental Photography Techniques
1.3.4. Image Editing

1.4. Digital Radiology

1.4.1. Types of Dental Radiographs
1.4.2. Digital Radiology Technology
1.4.3. Take Digital Dental Radiographs
1.4.4. AI Interpretation of Dental Radiographs

1.5. CBCT

1.5.1. CBCT Technology
1.5.2. Interpretation of CBCT Images
1.5.3. Diagnostic CBCT Imaging
1.5.3. CBCT Applications in Implant Dentistry
1.5.4. CBCT Applications in Endodontics

1.6. Dental Scanner

1.6.1. Scanning of the Dentition and Soft Tissues
1.6.2. Digital Modeling in Dentistry
1.6.3. Design and Fabrication of Digital Dental Prostheses
1.6.4. Applications of the Dental Scanner in Orthodontics

1.7. Dynamic Stereoscopy

1.7.1. Dynamic Stereoscopic Imaging
1.7.2. Interpretation of Dynamic Stereoscopic Images
1.7.3. Integration of Dynamic Stereoscopy into the Dental Work Flow
1.7.4. Ethics and Safety in the Use of Dynamic Stereoscopy

1.8. PIC Photogranulometry

1.8.1. PIC Phonogranulometry Technology
1.8.2. Interpretation of Phonogranulometric Records PIC
1.8.3. Applications of PIC Phonogranulometry in Dental Occlusion
1.8.4. Advantages and Disadvantages of the PIC Phonogranulometry

1.9. Facial Scanner

1.9.1. Facial Scanner Recording
1.9.2. Facial Data Analysis and Assessment
1.9.3. Integration of the Facial Scanner in the Dental Work Flow
1.9.4. Future of Facial Scanning in Dentistry

1.10. Files

1.10.1. Types of Digital Files in Dentistry
1.10.2. Digital File Formats
1.10.3. File Storage and Management
1.10.4. Security and Privacy of Digital Files

Module 2. Cephalometric analysis and photography

2.1. Basics of Photography

2.1.1. The Non-Digital Image
2.1.2. The Digital Image
2.1.3. The Detail
2.1.4. Advice

2.2. Photography in Science

2.2.1. Photography Uses
2.2.2. Case Documentation
2.2.3. Hospital Photography
2.2.4. Social Media

2.3. Photography in Dentistry

2.3.1. Photography in Orthodontics
2.3.2. Photography in Implant Dentistry
2.3.3. Photography in Periodontics
2.3.4. Photography in Dental Esthetics

2.4. Dental Photography Purposes

2.4.1. Patient Communication
2.4.2. Laboratory Communication
2.4.3. Legal Communication
2.4.4. Artistic

2.5. The Photographic Camera

2.5.1. Cameras Types
2.5.2. Camera Parts
2.5.3. Phone Camera
2.5.4. Lenses

2.6. Camera Elements

2.6.1. Flashes
2.6.2. Light Control
2.6.3. Exhibitions
2.6.4. A Learning Curve

2.7. Handling Photography

2.7.1. Diaphragm
2.7.2. Speed
2.7.3. Focus
2.7.4. Match

2.8. Digital Development, Storage and Design

2.8.1. Image Storage
2.8.2. Formats
2.8.3. Digital Development
2.8.4. Program Design

2.9. BSB Digital Cephalometry

2.9.1. Fundamentals of Digital Cephalometry in Dentistry
2.9.2. Scanning Technologies in Digital Cephalometry
2.9.3. Interpretation of Digital Cephalometric Data
2.9.4. Clinical Applications of Digital Cephalometry

2.10. Digital Cephalometry Programs (Ortokid)

2.10.1. Program Installation
2.10.2. Patient Discharge
2.10.3. Placement of Reference Points
2.10.4. Study Selection

Module 3. Digital Flow Endodontic and periodontal guides

3.1. Endodontic Guides

3.1.1. Virtual Planning of Endodontic Guidewire Placement Using 3D Design Software
3.1.2. Assessment of the Accuracy and Effectiveness of Digital Flow for Endodontic Guidewire Placement
3.1.3. Material Selection and 3D Printing Techniques for the Production of Endodontic Guides
3.1.4. Use of Endodontic Guides for Root Canal Preparation

3.2. Import File in Endodontic Guides

3.2.1. 2D and 3D Image File Processing for Virtual Planning of Endodontic Guidewire Placement
3.2.2. Assessment of the Accuracy and Effectiveness of File Import in Endodontic Guide Planning
3.2.3. Selection of 3D Design Software and File Formats for Import into Endodontic Guide Planning
3.2.4. Customized Design of Endodontic Guides Using Imported Medical Image Files

3.3. Localization of the Canal in Endodontic Guides

3.3.1. Digital Image Processing for Virtual Planning of Root Canal Location in Endodontic Guidewires
3.3.2. Assessment of the Accuracy and Effectiveness of Root Canal Location in Endodontic Guide Planning
3.3.3. Selection of 3D Design Software and File Formats for Root Canal Location in Endodontic Guide Planning
3.3.4. Customized Design of Endodontic Guides Using Root Canal Location in Planning

3.4. Fixing the Endodontic Guide Ring

3.4.1. Assessment of Different Types of Rings and Their Relationship to Endodontic Guidance Accuracy
3.4.2. Selection of Materials and Techniques for the Fixation of the Ring in the Endodontic Guide
3.4.3. Assessment of the Accuracy and Effectiveness of Ring Fixation in Endodontic Guidance
3.4.4. Custom Design of the Ring Fixation on the Endodontic Guide Using 3D Design Software

3.5. Dental Anatomy and Periapical Structures in Endodontic Guides

3.5.1. Identification of Key Anatomical Structures in the Planning of Endodontic Guides
3.5.2. Anatomy of Anterior and Posterior Teeth and Its Implications in Endodontic Guide Planning
3.5.3. Anatomy Considerations and Variations in Endodontic Guide Planning
3.5.4. Dental Anatomy in the Planning of Endodontic Guides for Complex Treatments

3.6. Periodontal Guides

3.6.1. Design and Production of Periodontal Guides Using Digital Planning Software
3.6.2. Importing and Recording CBCT Image Data for Periodontal Guide Planning
3.6.3. Periodontal Guide Fixation Techniques to Ensure Precision in Surgery
3.6.4. Digital Work Flows for Bone and Soft-Tissue Graft Placement in Guided Periodontal Surgery

3.7. Import File in Periodontal Guides

3.7.1. Types of Files Used in the Import of Digital Periodontal Guides
3.7.2. Procedure for Importing Image Files for the Creation of Digital Periodontal Guides
3.7.3. Technical Considerations for File Import in Digital Periodontal Guide Planning
3.7.4. Selection of Suitable Software for Importing Files into Digital Periodontal Guides

3.8. Coronary Lengthening Guide Design in Periodontal Guides

3.8.1. Definition and Concept of Coronary Lengthening Guide in Dentistry
3.8.2. Indications and Contraindications for the Use of Coronary Lengthening Guides in Dentistry
3.8.3. Procedure for the Digital Design of Coronary Lengthening Guidewires Using Specific Software
3.8.4. Anatomical and Aesthetic Considerations for the Design of Coronary Lengthening Guides in Digital Dentistry

3.9. Stl Export in Periodontal Guides

3.9.1. Dental Anatomy and Periodontal Structures Relevant to the Design of Periodontal and Endodontic Guides
3.9.2. Digital Technologies Used in the Planning and Design of Endodontic and Periodontal Guides, such as Computed Tomography, Magnetic Resonance Imaging and Digital Photography
3.9.3. Periodontal Guide Design
3.9.4. Endodontic Guide Design

3.10. Dental Anatomy and Periodontal Structures

3.10.1. Virtual Dental and Periodontal Anatomy
3.10.2. Design of Customized Periodontal Guides
3.10.3. Assessment of Periodontal Health Using Digital Radiographs
3.10.4. Guided Periodontal Surgery Techniques

Enjoy fully optimized learning through multimedia teaching formats such as video or interactive summary"

Postgraduate Diploma in Digital Technology in Dentistry

Digital technology in dentistry has become a fundamental tool for the diagnosis and treatment of patients. In the Postgraduate Diploma in Digital Technology in Dentistry program, we have designed a curriculum focused on training professionals who wish to expand their knowledge in the management and application of digital technologies in dentistry. During the Postgraduate Certificate, current topics such as the use of 3D printing in the creation of dental prostheses and the design of smiles through digital planning will be addressed. In addition, the integration of digital technology in the management of dental clinics, as a tool for the optimization of processes and improvement of patient care, will be discussed.

The Postgraduate Diploma in Digital Technology in Dentistry is an opportunity for professionals in the sector to acquire skills and knowledge necessary to be at the forefront of technological advances in the field of dentistry. In this postgraduate program, emphasis will be placed on the use of technology as a tool that allows for greater precision and efficiency in dental treatments, and will provide comprehensive training in the use of the latest digital tools and techniques. In addition, the program is designed for students to learn how to integrate digital technology into daily clinical practice, which will allow for more personalized and quality patient care.