Showing all 11 results

Angular Peek Tlif Cage

  • Titanium part at the end of the allows angular movement during implantation
  • The banana-like shape of ensures a maximized contact area between vertebrae and implant while being slim enough to be inserted through the foramen
  • Has only one implant inserter to insert
  • Has simple and easy application
  • Has toothed surface for good adhesion

Bladed Cervical Peek Cage

  • Blade of the designed to make fixation easier
  • Made of biocompatible proven polymer PEEK
  • Sharp teeth on surface of EOS allows extraordinary grip
  • Has good radiographic appearance

Cervical Peek Cage

  • Comprehensive modular spinal system with smart design
  • Modular systems allow the surgeon to select the various modular screw head options
  • Can be used in both open and percutaneous surgery
  • Different designs rods for MIS and open approach
  • Designs include several new and modular ideas for simplifying surgical application of the implants
  • Wide variety of implant options and accessories providing technological advancements to treat various spinal pathologies
  • Offers a comprehensive solution for rigid posterior fixation of the thoracolumbar regions of the spine
  • Allows intraoperative selection of tulip
  • All components are made of biocompatible titanium alloy

Expandable Bladed Cervical Peek Cage

  • Allows restoration of the height of the intervertebral space
  • Provides fast, easy and effective implantation by its ergonomically driver
  • Blade of the designed to make fixation easier
  • Expansion and opening of the blade mechanism with one movement
  • Has anatomical design

Expandable Peek Plif Cage

  • Due to expandable structure, height can be increased by 1mm
  • Provides parallel expansion
  • Expandability is achieved by the titanium alloy section of the product
  • Parallel expandable
  • Made of biocompatible titanium alloy
  • Only one inserter to insert and expand

Expandable Titanium Lumbar Interbody Cage

  • Less subsidence in osteoporotic conditions
  • One-step implantation – no trial implants required
  • Less risk for nerve roots and neural structures
  • Expansion mode indication by the inserter
  • Torque regulation of the contact pressure on the end plates
  • Highest primary stability after expansion Can be filled after expansion
  • Excellent osteointegration due to its titanium architecture
  • Shorter operative time

Peek Titanium Plif Cage

  • Has large segmental bone graft area for better fusion
  • Has ability to treat collapsed disc spaces
  • Allows extraordinary grip due to threaded structure
  • Made of biocompatible proven polymer PEEK
  • Has simple and easy application
  • Has anatomical design
  • Has toothed surface for good adhesion

Peek Tlif Cage

  • Has large segmental bone graft area for better fusion
  • Easily inserted into vertebral bodies from transforaminal approach
  • Allows extraordinary grip due to threaded structure
  • Allows extraordinary grip due to threaded structure
  • Made of biocompatible proven polymer PEEK
  • Has tantalum balls inserted for good radiographic appearance
  • Has anatomical design

Stand Alone Cervical Cage System

  • Integrate a hollow PEEK cage with a titanium screw locking mechanism
  • Can be safely applied to more than one level
  • Has large bone graft area for better fusion
  • No need for anterior profile
  • Self-drilling screws
  • Offers in a variety of sizes

Trabecular Titanium Lumbar Interbody Plif Cage

  • Porous nature of Titanium Cages mimics cancellous bone
  • Built layer by layer, using a high-powered laser to melt titanium alloy powder
  • Direct metal laser sintered Ti6Al4V surfaces enhances osteoblast response and osseointegration
  • Highly porous titanium alloy material designed for bone in-growth and biological fixation and great mechanical performance
  • Real osseointegration improves long term stability
  • Have suitable elastic modulus avoids stress shielding

Trabecular Titanium Lumbar Interbody Tlif Cage

  • Porous nature of Terracotta Trabecular Titanium Cages mimics cancellous bone
  • Built layer by layer, using a high-powered laser to melt titanium alloy powder
  • Direct metal laser sintered Ti6Al4V surfaces enhances osteoblast response and osseointegration
  • Highly porous titanium alloy material designed for bone in-growth and biological fixation and great mechanical performance
  • Real osseointegration improves long term stability
  • Have suitable elastic modulus avoids stress shielding