
Inlays & Onlays
Conservative restorations with precise functional anatomy
Zirconia and lithium disilicate (e.max) inlays and onlays are reliable options for restoring occlusal anatomy while preserving healthy tooth structure when clinically appropriate.
They support stable contacts, functional occlusion, and natural esthetics while offering a conservative alternative to full-coverage restorations in selected cases.
OVERVIEW
Why inlays & onlays matter
Inlays and onlays support a conservative approach to restorative dentistry by preserving natural tooth structure while restoring strength, anatomy, and function.
With digital design and CAD/CAM milling, these restorations can be planned for accurate contacts, controlled occlusion, and natural esthetics depending on material selection and clinical requirements.

Technical Excellence
Minimally Invasive Approach
Inlays and onlays can restore function without full-crown preparation in many cases, helping preserve natural tooth structure.
Functional Anatomy
Digital workflows support reconstruction of cusps, fissures, and occlusal contacts for comfortable and natural function.
Precise Fit
CAD/CAM production supports controlled margins, contours, and internal space for adhesive bonding.
Strength & Wear
Zirconia or lithium disilicate materials are selected according to case requirements, esthetic goals, and occlusal conditions.
Quality Control

Fit Verification
Seating is checked on the model when applicable, with internal space reviewed using lab control methods.

Margin Inspection
Microscopic inspection of margins and thin-edge transitions is performed to check for chips, defects, or irregularities.

Occlusion Validation
Occlusal contacts are reviewed to help reduce chairside adjustments and support functional comfort.
Specifications

Indications
Larger Class I/II restorations, cusp replacement, and replacement of large existing restorations when clinically appropriate.

Fabrication
CAD/CAM milling from digital STL files.

Material Options
Zirconia or lithium disilicate (e.max), selected according to case requirements.

Turnaround
Up to 3 business days in-lab after case approval, depending on case complexity.
