All-on-X Biomechanics: Science Meets Common Sense
COURSE OVERVIEW
While artificial intelligence can support clinicians in achieving successful outcomes, human intelligence remains the cornerstone of predictable and lasting results. This course reviews the biomechanical, physiological and psychological factors that influence long-term All-on-X success, emphasizing bone quality and quantity, prosthetic design principles and force management strategies. Participants will gain practical insights to reduce implant and prosthetic complications.
While artificial intelligence can support clinicians in achieving successful outcomes, human intelligence remains the cornerstone of predictable and lasting results. This course reviews the biomechanical, physiological and psychological factors that influence long-term All-on-X success, emphasizing bone quality and quantity, prosthetic design principles and force management strategies. Participants will gain practical insights to reduce implant and prosthetic complications.
Audience: Dentists, Specialists, Dental Assistants, Technicians
Recommended Pre-requisite: None
Format
Lecture, Live Webinar
Subject
610 Fixed Prosthodontics
Speaker
Jeff Carlson, CDT
Course Date
September 22nd
@ 7:00 PM ET /
4:00 PM PT
Credit
1 CEU
Course Fee
Free
LEARNING OBJECTIVES
At the end of this course, attendees should be able to:
■ Perform a three-dimensional evaluation of available bone (height, width and length), while understanding how variations in bone quality influence prosthetic design principles
■ Perform a three-dimensional evaluation of available bone (height, width and length), while understanding how variations in bone quality influence prosthetic design principles
■ Analyze the biomechanical implications of cantilevers and apply design strategies that minimize risk and support long-term clinical success
■ Apply critical decision-making principles to select the most appropriate definitive prosthesis based on individual patient factors, clinical conditions and restorative goals
■ Apply critical decision-making principles to select the most appropriate definitive prosthesis based on individual patient factors, clinical conditions and restorative goals
Jeff Carlson, CDT


