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Digital Workflow for a Definitive Implant-Supported Hybrid Prosthesis.

Julian Conejo1, Alejandro Sanchez-Lara2, Christina Rivet3

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Summary

This study reviews digital manufacturing for implant-supported hybrid prostheses. It details steps to improve fit and reduce failures in full-arch restorations for edentulous patients.

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Area of Science:

  • Dentistry
  • Prosthodontics
  • Biomaterials Engineering

Background:

  • Implant-supported hybrid prostheses are common for edentulous patients.
  • Common failures include lack of prosthetic space and poor framework fit, leading to fractures.
  • Digital manufacturing offers potential solutions for improved outcomes.

Purpose of the Study:

  • To review clinical and laboratory steps for fabricating definitive implant-supported hybrid prostheses.
  • To highlight the use of digital manufacturing technologies in the process.
  • To address common failure modes by optimizing prosthetic fit and space.

Main Methods:

  • Utilizing bone reduction guides for precise bone contouring.
  • Employing implant osteotomy guides for accurate implant placement.
  • Implementing immediate provisionalization strategies.
  • Leveraging digital manufacturing technologies throughout the workflow.

Main Results:

  • Digital workflows enhance precision in bone reduction and implant positioning.
  • Immediate provisionalization aids in managing the prosthetic space.
  • Improved passive fit of the framework is achievable, reducing mechanical stress.
  • Potential for decreased incidence of chipping, delamination, and fractures.

Conclusions:

  • Digital manufacturing technologies significantly improve the fabrication of implant-supported hybrid prostheses.
  • The integration of guides and immediate provisionalization enhances prosthetic success.
  • This approach offers a more predictable and reliable treatment for edentulous patients.