Prosthetics & Instrumentation · IC+
IC+ Restorative Solutions: Next-Generation Soft Tissue Management
Featuring a newly optimised concave design and expanded size ranges, our IR-compatible prosthetic components for the IC+ line deliver superior esthetics and long-term tissue stability.
The Concave Advantage
The latest update to the BTK prosthetic line introduces a fundamentally improved transmucosal path. By transitioning from a traditional convex shape to an advanced concave design, these components offer exceptional soft tissue management. This is highly effective for sub-crestal implant placements, ensuring optimal adaptation and integration with surrounding gingival tissues for predictable clinical outcomes.
Explore the Upgraded Prosthetic Portfolio (IR / LR Compatible):
- Advanced Healing & Soft Tissue Conditioning: The new concave healing abutments are available in a significantly expanded range of heights (up to 7mm) and diameters (1.8 mm, 4.1 mm, 4.5 mm, 5.5 mm, and 6.5 mm) to sculpt the perfect emergence profile.
- Aesthetic Ti-Bases (BT LINK & X3 LINK): All Ti-Bases now feature a specialised yellow anodization. This ensures a warm, natural hue shines through your final restorations.
- Customisable X3 Links: We now offer X3 Links (Base BT Link) with a fully closed but sectionable cylinder. These can be easily cut at predefined heights of 4.5mm, 6mm, or 8mm to perfectly match your restorative space.
- Enhanced Temporary & Final Abutments: Temporary abutments (available in titanium and PEEK) and final straight/angled abutments have been upgraded with the concave profile. Angled abutments are available in 15° and 25° profiles.
- All-on-4™ & All-on-6™ Solutions: Our BT4 Straight and Angled Abutments (17° and 30°) have been refined with an optimised transmucosal path and are now available in heights up to 4mm to accommodate varying tissue depths in immediate loading cases.
- Digital Workflows: Intra-oral scan abutments are now available in expanded heights (up to 3mm) to ensure clear, accurate digital impressions even in deep sub-crestal scenarios.
