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Digital orthodontics 2021
5.00
4 оценок
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Giorgio Fiorelli
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Nearchos Panayi
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Stefano Negrini
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Simon Graf
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Daniel Souza Pinto Ramos
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Emanuele Paoletto
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Asta Abuneviciute
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Александр Плаксин
Детали курса
Уроки курса
Уроки курса
Лекторы
Отзывы
Детали
11 уроков (16ч 46мин)
Английский
Описание
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Урок 1.3D metal printed Orthodontic appliances
– Step by step the virtual planing, printing and сlinical insertion of a 3D metal printed rapid-palatal expansion device;
– Ideas and possibilities from 3D printed appliance in regards of variability and different aspects for clinical use.
Урок 2.3D metal printed orthodontic appliances + TADs
– How to join 3D metal printed appliances with Mini-Implants and TADs;
– Different types of distalising and mesialising devices on TADs;
– CAD/CAM planned, designed and produced bonded retention wires.
Урок 3.Impact of a 3D technologies in palatal skeletal anchorage: MAPA APPROACH
– New possibilities for miniscrews application; – MAPA Approach to integrate skeletal anchorage in daily orthodontic treatment; – 3D analysis: digital planning for miniscrew insertion appliance design; – Digital workflow with LMF and DLP technology; – Skeletal devices for class II and III and hybrid expanders; – ONE VISIT” protocol : miniscrews insertion and appliance delivery in one appointment; – TSE: New efficient expander device for Adult Palatal Expansion.
Урок 4.Why facially driven digital interdisciplinary treatment planning?
– Introduction to the Digital Smile Design concept;
– Increasing Ortho acceptance in the Interdisciplinary workflow;
– Design-plan-present-promote-control: the full digital workflow demonstration through clinical cases;
– Emotional Presentation: the power of the Storytelling and visual communication.
Урок 5.Why facially driven digital orthodontics with aligners?
– Increasing your Ortho case acceptance by understanding your patient needs;
– Fully incorporate your ortho to the facially driven digital workflow;
– Aligners becoming the Plan A to my patients;
– The benefits of incorporating acceleration in your Orthodontic Treatments;
– Clinical cases: from simple to complex.
Урок 6.Digital imaging and biological limits in orthodontics
– How to get the necessary information from CBCT?
– Evaluation of symmetry in 3D space;
– Measurement of the maxilla skeletal width;
– Limits of teeth movement and periodontal assessment;
– Features of the TMJ visualization;
– What programs will help orthodontist get the necessary reformats?
– The main functions and features of Invivo Anatomge, Horos Viewer, Diagnocat.
Урок 7.Digital orthodontic office
– The basic principles of 3D intraoral scanning; – The basic principles of 3D manufacturing (3D printing and milling); – How to organize a digital orthodontic office; – The various kinds of Orthodontic and non-Orthodontic CAD software; – How to design in-house Orthodontic aligners; – The basic principles of the innovative technique of direct aligner printing performed in-office using CAD software and 3D printer; – How to 3D design and print customized Orthodontic appliances using a CAD free software; – The workflow and basic tools of a new Orthodontic CAD software for in-office 3D designing and printing of Customized lingual and labial orthodontic brackets; – The digital future of Orthodontics (new software, printers, artificial intelligence etc).
Урок 8.Fix & removable appliances: milling vs printing
– 2d vs 3d; – Fix appliances removable appliances; – Materials; – S.L.M. milling and printing system; – Software overview.
Урок 9.The Occlusogram - software for the implementation of orthodontic biomechanics (with Asta Abuneviciute)
– Determination of dental arch shape length and width and estimation of space conditions; – Analysis and determination of symmetry; – Determination of tooth movements in all three planes of space; – Estimation of anchorage requirements; – Estimation of necessary force systems; – How to plan a cases where movement of the mandible is required or predicted; – How to transfer a mandible into a new position in the software; – Visualization of several treatment plan options; – Treatment plan mechanics; – The hard parts and obstacles in the treatment plan before the start.
Урок 10.The Occlusogram - software for the implementation of orthodontic biomechanics (with Giorgio Fiorelli)
– Determination of dental arch shape length and width and estimation of space conditions;
– Analysis and determination of symmetry;
– Determination of tooth movements in all three planes of space;
– Estimation of anchorage requirements;
– Estimation of necessary force systems;
– How to plan a cases where movement of the mandible is required or predicted;
– How to transfer a mandible into a new position in the software;
– Visualization of several treatment plan options;
– Treatment plan mechanics;
– The hard parts and obstacles in the treatment plan before the start.
Урок 11.Digital design of Herbst, Frankel, TwinBlock, retainers
– Digital Design Of The Appliances; – Fix. Rme - Herbst - Retainer - Carriere; – Removable. Twin Block - Splint - Cervera - Frankel; – Tip Trics.
Курс включает в себя уроки:

Урок 4
Why facially driven digital interdisciplinary treatment planning?
Daniel Souza Pinto RamosПоказать программу урока
0:01
Introduction and speaker background
5:32
Patient priorities and course outline
7:34
Pre‑acceptance steps and design goals
9:11
Facially driven approach — case learning
13:36
Smile aesthetics and natural smile principles
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Лекторы 8
Creator of the software T3do and DMA for Orthodontic treatment planning and mechanics design.
Dr. Fiorelli obtained his medical, dental, and orthodontic postgraduate degrees at the University of Siena in Italy.
He has also co-published with Prof. Birte Melsen the “Biomechanics in Orthodontics” multimedia software.
His main professional interests are orthodontic biomechanics, use of computers within the orthodontic practice, segmented arch technique and adult orthodontic treatment.
Specialist Orthodontist. Founder and Director of Dr. Nearchos Panayi Orthodontic Center, Limassol, Cyprus. Assistant Professor of Orthodontics at European University Cyprus (EUC), Zurich. Leading expert in digital orthodontics and CAD-based orthodontic appliance design.
Over 24 years of clinical experience since graduating dental school in 2002. Expert in digital orthodontic office management, 3D intraoral scanning principles and applications, 3D printing and milling technologies for orthodontics, in-office clear aligner printing using CAD software and 3D printers, digital design and printing of custom orthodontic appliances, self-ligating lingual and labial bracket systems designed with CAD software, and comprehensive digital orthodontic workflows. Pioneer in implementing fully digital orthodontic practice eliminating traditional impression materials and laboratory dependencies. Known for innovative approaches integrating technology with clinical orthodontics.
International lecturer presenting extensively throughout Europe and worldwide on topics including digital orthodontic office setup and management, principles of 3D intraoral scanning for orthodontics, principles of 3D printing and milling applications in orthodontics, innovative in-office aligner printing techniques, free CAD software for 3D design of custom orthodontic appliances, workflow and tools for new CAD orthodontic software for designing and printing custom self-ligating lingual and labial brackets, and the future of digital orthodontics including new software, printers, artificial intelligence applications, and emerging technologies. Educator emphasizing practical implementation of digital technologies to improve efficiency, accuracy, and patient experience. Instructor teaching orthodontists worldwide how to leverage digital tools for superior treatment outcomes and practice efficiency.
DDS from University of Athens, Greece (2002). DOrth, MOrth (Master of Orthodontics) from Tel-Aviv University, Israel. Assistant Professor appointment at European University Cyprus and teaching at Zurich campus.
Certified Dental Technician specializing in digital orthodontics, CAD/CAM orthodontic appliances, indirect bonding solutions, and clear aligner technology. CEO and Founder of Ortodonzia Estense Ltd in Ferrara, Italy, an orthodontic dental laboratory, education center, and product development company focused on innovative digital orthodontic technologies.
Over 30 years of experience in orthodontic laboratory techniques with transition from traditional analog methods to comprehensive digital workflows. Pioneer in digital orthodontics in Italy, developing systematic protocols for 3D-printed and milled orthodontic appliances including functional appliances (Herbst, Fränkel, Twin Block), retainers, indirect bonding trays, and clear aligner systems. Expert in digital design software and decision-making between milling versus 3D printing for different appliance types.
Chairman of ORTEC (Association of Italian Orthodontic Technicians, 2015-2016). Recipient of the Aldridge Medal Award from the OTA Orthodontic Technicians Association, United Kingdom (2018), recognizing outstanding contributions to orthodontic technology. Key Opinion Leader (KOL) for 3Shape since 2009. International lecturer and educator presenting throughout Europe, Asia, and Americas on digital orthodontic workflows, appliance design, and laboratory-clinician collaboration. Author of multiple articles in orthodontic technology journals on digital solutions and innovative appliance fabrication.
Certified Dental Technician. Master's degree in Orthodontic Laboratory Techniques (SDT - Specialista in Dispositivi di Tecnica Ortodontica) from University of L'Aquila, Italy (2011-2012). Master's degree in Digital Dental Solutions from Marconi University, Rome, Italy (2015-2016). Founder of Ortodonzia Estense in 1992, initially specializing in fixed, removable, functional, and orthopedic appliances before transitioning to digital-focused practice.
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