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Updated: Jun 12, 2026

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3D Planning and Printing of Patient Specific Implants for Reconstruction of Bony Defects
Published on: August 4, 2020
New implant software abutments for inLab 3.65.
International Journal of Computerized Dentistry
|May 21, 2010
Summary
The "Implants for inLab" software utilizes a versatile bonding base for various dental implants. Its zirconium dioxide component allows for precise customization, enhancing esthetic implant restorations.
Area of Science:
- Dental Materials Science
- Biomaterials Engineering
- Prosthodontics
Background:
- Dental implant restorations require precise fit and high esthetics.
- Current software solutions may lack versatility for different implant types.
- Zirconium dioxide offers biocompatibility and esthetic potential for dental prosthetics.
Purpose of the Study:
- To introduce the
- Implants for inLab
- software and its innovative approach to dental implant restorations.
- To highlight the software's capability in achieving high esthetic outcomes for implant-supported prosthetics.
- To describe the system's components, including the polyvalent bonding base and modifiable zirconium dioxide block.
Main Methods:
- The
- Implants for inLab
- software employs a polyvalent bonding base adaptable to various implant systems.
- A key feature is the use of a modifiable zirconium dioxide block with a prefabricated connection.
- The system facilitates accurate coupling between the bonding base and the zirconium dioxide restoration.
Main Results:
- The software enables diverse design possibilities for implant restorations.
- The polyvalent bonding base ensures compatibility across different implant types.
- The prefabricated connection configuration allows for precise and reliable assembly.
- Restorations designed with this system meet high esthetic demands.
Conclusions:
- The
- Implants for inLab
- software provides a versatile and esthetically focused solution for dental implant restorations.
- The combination of a polyvalent bonding base and customizable zirconium dioxide blocks enhances clinical applicability.
- This system is particularly advantageous for restorations requiring superior esthetic results.
