Premier - Sycamore Wedges - UltraThin, Orange
- VendorPremier Dental
Premier - Sycamore Wedges - UltraThin, Orange
- VendorPremier Dental
$56.25
- Ultra-thin profile fits narrow interproximal spaces
- Anatomical shape supports matrix band adaptation
- Slightly compressible wood supports tooth separation
- Sycamore wood resists splintering in thin sections
- Orange color identifies the Ultra-Thin size
- Quantity: 400 per Pack
Premier Dental Sycamore Wood Wedges, Ultra-Thin, Orange are used for interproximal wedging during restorative procedures where matrix band adaptation, controlled tooth separation, and contact formation are important. The Ultra-Thin profile is designed for narrow interproximal spaces where a standard wedge may be too bulky, while the anatomical shape helps the wedge seat securely between adjacent teeth and support the matrix against the preparation, and sycamore wood provides slight compressibility so the wedge can adapt under pressure while maintaining its form throughout the restorative procedure.
Each pack contains 400 anatomically shaped wedges, orange in color to identify the Ultra-Thin variant within the Premier Dental wedge range.
Dental offices ordering interproximal wedges from their supplier can buy this Ultra-Thin size for narrow embrasure spaces where a larger wedge could interfere with access or matrix positioning, since the wedges are shaped to follow interproximal anatomy while providing localized support for restorative matrix systems, and the high 400-count package supports repeated use across a busy restorative schedule without frequent reordering.
The wedge functions by seating between adjacent teeth and applying controlled separation while helping adapt the matrix band closely against the tooth. The slightly compressible sycamore wood allows the wedge to conform under pressure and helps compensate for matrix band thickness during restorative placement. Once the wedge and matrix are removed, the teeth can return toward their original position, supporting the intended proximal contact relationship.
The wood is also designed to resist splintering even in thin sections, which is particularly important for an Ultra-Thin wedge, and together, the anatomical shape, compressibility, and material strength support stable matrix adaptation during Class II and other interproximal restorative procedures requiring precise contact management and reliable matrix stability.