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Digital orthodontics
4.12
17 votes
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Nearchos Panayi
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Stefano Negrini
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Daniel Souza Pinto Ramos
Course details
Course lessons
Course lessons
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This online course
Details
5 lessons (8h 39min)
8 CE Credits

English
Access to the record for Membership period
Description
A complete course on the use of digital technologies in orthodontics, from which you will learn everything from the features of digital planning of orthodontic treatment to 3D printing methods of orthodontic appliances.
The authors of the course will tell in detail about the principles of obtaining a high-quality image on a CBCT, the advantages and protocols of working with an occlusogram, creating a digital design of orthodontic appliances.
You will learn about the MARA approach when planning TADs, as well as the anatomical and biological limits of tooth movement.
Lesson 1.Digital orthodontic office
– Advantages of the digital approach in work
– 3D technologies in orthodontics: indications for CBCT
– Advantages and disadvantages of MRI in orthodontics
– 3D printing technologies:
- Stereography
- Extrusion of materials.
– Digital workflow in orthodontics
– Artificial intelligence in dentistry
– Methods of creating the design of orthodontic appliance: Meshmixer CAD Software
– Technology for creating a digital model
– Materials for digital printing
– The design of aligners: the methodology of work in the program
– Direct and indirect method of fixing braces: advantages and disadvantages
– Technologies of orthodontic braces design
– The use of a robot for bending arcs
– 3D design and printing of lingual and vestibular braces.
Recommended for: Orthodontists.
Lesson 2.Fix & removable appliances: milling vs printing
– 2D and 3D operating modes: comparison
– Digital manufacturing process of removable and non-removable orthodontic appliances
– Materials for the manufacture of orthodontic appliances
– Modified Zero Expander 3 appliance: digital workflow
– Milling and printing: advantages and disadvantages
– Digital process software:
- 3Shape
- 3DLeone.
Recommended for: Orthodontists.
Lesson 3.Digital design of Herbst, Frankel, TwinBlock, retainers
– Rapid Palatal Expander: digital manufacturing protocol
– The 3DLeone program when creating Rapid Palatal Expander
– The Carriere appliances: digital methods of individualization
– Manufacture of non-removable orthodontic appliances: Herbst appliance
– Twinblock: digital manufacturing process
– Clinical tips and recommendations for the manufacture of appliances.
Recommended for: Orthodontists.
Lesson 4.Why facially driven digital interdisciplinary treatment planning?
– The role of the orthodontist in interdisciplinary treatment planning
– Digital treatment planning: advantages
– Rules and stages of the digital workflow
– Photo and video protocol
– DSD Hands on: working principle
– Indications for 3D digital smile design
– Full protocol of digital treatment planning
– Motivation and presentation of the treatment plan to the patient: the advantages of visual communication.
Recommended for: Orthodontists.
Lesson 5.Why facially driven digital orthodontics with aligners?
– The value of the digital workflow in the orthodontist's practice
– Advantages of treatment on aligners
– Ways to fast and predictable treatment on aligners
– Biological aspects of the movement of teeth by aligners
– Rules and features of working with aligners
– Acceleration of the treatment process: microperforations
– Treatment of complex clinical cases with aligners
– VPRO and aligners: advantages and disadvantages of the method
– Planning of orthognathic surgeries.
Recommended for: Orthodontists.
Course includes next lessons:
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2h 1min
Lesson 1
Digital orthodontic office
Nearchos PanayiShow lesson program
0:01
Introduction and Lecture Overview
9:18
Personalization in Medicine and Dentistry
18:37
Analog vs Digital Orthodontic Workflow
27:56
3D Imaging in Orthodontics (CBCT, MRI, Scanning)
37:14
Additive & Subtractive Manufacturing Methods
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1h 25min
Lesson 2
Fix & removable appliances: milling vs printing
Stefano NegriniShow lesson program
0:01
Introduction and Lecture Objectives
2:24
Lab Digital Adoption and Workflow
5:34
Early Digital Appliances and SLM Trials (2008)
11:55
Digital Workflow, Cloud Approvals and Lab Growth
20:09
Metal Production: SLM vs Milling for Appliances
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1h 28min
Lesson 3
Digital design of Herbst, Frankel, TwinBlock, retainers
Stefano NegriniShow lesson program
0:01
Introduction and Lab Profile
9:08
Digital Workflow and Cloud Validation
14:33
SLM and Fixed Appliance Materials
22:26
Custom Metal Appliance Designs
29:14
Design Software Demo and SLM Workflow
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1h 46min
Lesson 4
Why facially driven digital interdisciplinary treatment planning?
Daniel Souza Pinto RamosShow lesson program
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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