NeoHealth RelyX Red Fiberglass Dental Fiber Posts, Size 2 (1.6mm), Pack of 5
Overview
The NeoHealth RelyX Red Fiberglass Dental Fiber Posts are precisely engineered for the reliable restoration of teeth with severely compromised coronal structures. These advanced posts offer dental professionals a robust solution for both durability and aesthetic integration in demanding restorative procedures.
Designed to provide essential structural support, these fiberglass posts are a key component in modern endodontic post-and-core treatments, ensuring foundational stability for subsequent crown or filling material placement.
Why You'll Like It
- Provides high flexural strength, contributing to robust and enduring dental restorations.
- Features an elasticity modulus closely matching natural dentin, which enhances the reliability and integrity of the restored tooth structure.
- Offers excellent light transmission, facilitating superior aesthetic outcomes when used with all-ceramic and composite restorations.
- Easily identifiable on radiographs, streamlining diagnostic assessments and planning for potential re-endodontic treatment.
- Designed for efficient and quick fixation, optimizing clinical workflows when used with compatible luting agents.
- Allows for predictable and safe removal from the root canal, simplifying procedures if future re-treatment becomes necessary.
Who It's For
- Dental professionals performing post-and-core restorations on teeth with extensive coronal destruction.
- Clinicians prioritizing high aesthetic standards in all-ceramic and composite dental restorations.
- Practitioners who require materials that offer predictable radiopacity and ease of retrieval for future endodontic re-treatment.
- Restorative specialists seeking a dental post with mechanical properties harmonious with natural tooth structure.
Package Details
- Quantity: 5 individual posts per pack.
- Size: 2 (1.6 mm diameter).
- Color: Red, for clear identification and differentiation during placement.
- Material: High-quality fiberglass for optimal performance and biocompatibility.

