• TI-MESH for Tenting Screw

TI-MESH for Tenting Screw

Type Spec. Thickness Reference
Hrz. Type x 1 L15xW12mm 0.1mm HS102F0100
Hrz. Type x 1 L15xW12mm 0.07mm HS102F0200
Hrz. Type x 2 L20xW12mm 0.1mm HS102F0300
Hrz. Type x 2 L20xW12mm 0.07mm HS102F0400
Hrz. Type x 3 L30xW18mm 0.1mm HS102F0500
Hrz. Type x 3 L30xW18mm 0.07mm HS102F0600
Hrz. Type x 4 L30xW24mm 0.1mm HS102F0700
Hrz. Type x 4 L30xW24mm 0.07mm HS102F0800

TISS Ti‑Mesh is a high-quality titanium mesh specifically designed for dental bone augmentation and GBR (Guided Bone Regeneration) procedures. Made from pure titanium, it combines high structural strength with excellent biocompatibility, effectively maintaining the bone graft space to ensure stable new bone formation and improve implant success and long-term stability.

Dimensions & Specifications

  • Mesh Sizes: 15x12 / 20x12 / 30x18 / 30x24 mm

  • Thickness: 0.07 mm / 0.1 mm

  • Material: Pure Titanium (Ti), highly biocompatible

  • Application: Horizontal or vertical alveolar bone augmentation for dental implants

Key Features

  • High Strength Structure: Maintains the graft space and prevents soft tissue collapse

  • Flexible & Customizable: Thin mesh structure can be shaped, bent, or trimmed to fit the patient’s bone defect

  • Clinically Safe: Pure titanium minimizes immune rejection and is suitable for long-term implantation

  • Highly Compatible: Can be used with autogenous bone, allografts, or bone substitutes, and combined with barrier membranes

Clinical Applications
Ti‑Mesh is suitable for various dental bone reconstruction cases, especially when horizontal or vertical bone augmentation is required prior to implant placement. Its high support and precise adaptability help clinicians achieve optimal bone regeneration results.

Usage Recommendation
Should be handled by experienced dental professionals. Choose the appropriate size and thickness according to the patient’s bone defect. It is recommended to use in combination with bone graft materials and barrier membranes to maximize new bone formation efficiency.