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Library of Orthodontic appliances. Module 2: digital protocols
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Stefano Negrini
Course details
Course lessons
Course lessons
Lecturers
ADA CERP
Details
9 lessons
6.75 CE Credits

English
Description
Online library of digital protocols for manufacturing the most popular orthodontic appliances: all in one place!
Training model: "tell-show-do". Detailed video protocols for manufacturing of appliances are waiting for you, which you can return to at any time:
– RME appliances
– TwinBlock
– Herbst appliances
– Beneslider by direct and indirect methods
– Bone Borne RME by direct and indirect methods
– Mesialslider by direct and indirect methods.
Lesson 1.RME appliances: manufacturing methods in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Design custom bands and arms
– Select and add different screws
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 1 h 15 min
Lesson 2.TwinBlock: manufacturing methods in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Design base for TwinBlock
– Select and add bite block for TwinBlock
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 1 h 15 min
Lesson 3.Herbst appliances: manufacturing methods in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Design custom bands for Herbst (different options)
– Select and add different screws and attachments for Herbst arms
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 1 h 15 min
Lesson 4.Beneslider: direct manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– Design full Beneslider in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Lesson 5.Beneslider: indirect manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– The Doctor inserts in place TADs and takes a scan with ScanBody
– Prepare STL files and combine them with scanbody
– Design full Beneslider in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Lesson 6.Mesiaslider: direct manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– Design full Mesialslider in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Lesson 7.Mesiaslider: indirect manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– The Doctor inserts in place TADs and takes a scan with scanbody
– Prepare STL files and combine them with scanbody
– Design full Mesialslider in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Lesson 8.Bone Borne RME: direct manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– Design full Bone Borne RME in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Lesson 9.Bone Borne RME: indirect manufacturing method in a digital protocol
– Receive and prepare scans with model bases
– Clean models preparing for design (if necessary)
– Combine STL files and CBCT files
– Planning TADs positions and designing the insertion guide
– The doctor inserts in place TADs and takes a scan with scanbody
– Prepare STL files and combine them scanbody
– Design full Bone Borne RME in 3D
– Finish the design and prepare for manufacturing.
Recommended for: Orthodontists, Dental technicians.
Time: 35 min
Course includes next lessons:
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