Solutions

Interbody platform

ORIO-Ti Titanium Cervical Cage

ORIO-C Peek-Optima

ORIO-PL PLIF

ORIO-Ti PLIF

ORIO-TL Curved TLIF

ORIO-TL TLIF

ORIO-Ti TLIF

Orio Ti Cervical
Titanium Cage

Orio-C Peek-Optima

Orio-PL PLIF

Orio-TI PLIF

Orio-TL Curved TLIF

Orio-TL Oblique

Orio-TL TLIF Curved

ORIO-Ti
CERVICAL
TITANIUM CAGE

ORIO-Ti Cervical Titanium Cage is a unique anatomic cage with optimum graft cavity volume, it incorporates macro features for immediate mechanical fixation and proprietary surface micro texturing to promote osteoblastic differentiation. The combination of roughened topographies at the macro and micro levels allows a more robust fusion process. The cage is designed to be implanted without damaging the vertebral endplates to increase resistance to subsidence.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • Manufactured from Ti 6Al-4V ELI Titanium Alloy
  • Macro & Micro surface features & texturing
  • Fully anodized surfaces
  • True anatomical design
  • Large graft cavity

 

Benefits

  • Stable fixation to bone tissues with excellent biocompatability
  • Improved osseointegration and incorporation into fusion mass
  • Anodized Ti surface increases blood clot retention, increased nano-roughness and favors osseointegration
  • Minimize subsidence
  • Promote achieving solid fusion

 

Orio-c peek optima

ORIO-C Cervical I/F Cage is a unique anatomic, self-anchoring cage made from PEEK-Optima®. Radiolucency is given by the PEEK-Optima® material, a poly-ether-ether-ketone whose durability and flexibility are similar to those of cancellous and cortical bone, with the high level of biocompatibility needed for long-term implantation in the body. Moreover, the material is highly transparent to x-rays and does not generate radiographic distortions, thus permitting reliable positional verification of the implant.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • PEEK-Optima® is radiolucent and artifact-free in MRI technology
  • Optional self-anchoring
  • Anatomic design of cranial and caudal surfaces
  • Careful design of cage shape with curved walls​
  • PEEK-Optima® is completely inert in-vivo

 

Benefits

  • Optimal postoperative follow-up
  • Excellent stability and resistance to expulsion
  • Optimal fit to end-plates with reduced subsidence
  • Ideal adaptation to the vertebral body
  • Excellent biocompatibility

 

Orio-pl plif

ORIO-PL PLIF PEEK Cage is a unique anatomic cage with optimum graft cavity volume made from PEEK-Optima®. Radiolucency is given by the PEEK-Optima® material, a poly-ether-ether-ketone whose durability and flexibility are similar to those of cancellous and cortical bone. This material has a high level of biocompatibility needed for long-term implantation in the body. Moreover, the material is highly transparent to x-rays and does not generate radiographic distortions, thus permitting reliable positional verification of the implant.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • PEEK-Optima® is radiolucent and artifact-free in MRI technology
  • PEEK-Optima® is completely inert in-vivo
  • Anterior and posterior radiopaque tantalum markers
  • Bullet-nosed design​
  • Anatomical design

 

Benefits

  • Optimal postoperative follow-up
  • Excellent biocompatibility
  • Easy radiological confirmation of implant placement
  • Easy insertion​
  • Restores physiological lordosis

 

ORIO-Ti P-TLIF

ORIO-Ti P-TLIF Trapezoidal Titanium Cage is a unique anatomic cage with optimum graft cavity volume made from Titanium and incorporates macro features for immediate mechanical fixation and proprietary surface micro texturing to promote osteoblastic differentiation. The combination of roughened topographies at the macro and micro levels allows a more robust fusion process. The cage is designed to be implanted without damaging the vertebral endplates to increase resistance to subsidence.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • Manufactured from Ti 6Al-4V ELI Titanium Alloy
  • Macro & Micro surface features & texturing
  • Fully anodized surfaces
  • Unique, patented Trapezoidal design
  • Large graft cavity

Benefits

  • Stable fixation to bone tissues with excellent biocompatability
  • Improved osseointegration and incorporation into fusion mass
  • Anodized Ti surface increases blood clot retention, increased nano-roughness and favors osseointegration
  • Allow for Mono-portal PLIF and STAC techniques
  • Promote achieving solid fusion

Orio-TL Curved Tlif

ORIO-TL Curved TLIF PEEK Cage is a transforaminal lumbar cage made from PEEK-Optima®. The cage is curved so that it mirrors the natural radius or curvature of the vertebral bodies and is designed with 5 degrees lordotic angle. Radiolucency is given by the PEEK-Optima® material, a poly-ether-ether-ketone whose durability and flexibility are similar to those of cancellous and cortical bone, with the high level of biocompatibility needed for long-term implantation in the body. Moreover, the material is highly transparent to x-rays and does not generate radiographic distortions, thus permitting reliable positional verification of the implant.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • PEEK-Optima® is radiolucent and artifact-free in MRI technology
  • PEEK-Optima® is completely inert in-vivo
  • Radiopaque tantalum markers​​
  • Faceted end of implant where it connects to inserter

Benefits

  • Optimal postoperative follow-up​
  • Excellent biocompatibility
  • Easy radiological confirmation of accurate implant placement​
  • Allows for positioning at 3 different angles on the inserter during cage implantation

Orio-TL TLIF

ORIO-TL TLIF PEEK cage is an anatomic transforaminal lumbar cage for oblique placement made from PEEK-Optima®. Radiolucency is given by the PEEK-Optima® material, a poly-ether-ether-ketone whose durability and flexibility are similar to those of cancellous and cortical bone, with the high level of biocompatibility needed for long-term implantation in the body. Moreover, the material is highly transparent to x-rays and does not generate radiographic distortions, thus permitting reliable positional verification of the implant.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • PEEK-Optima® is radiolucent and artifact-free in MRI technology​
  • PEEK-Optima® is completely inert in-vivo​
  • Anterior and posterior radiopaque tantalum markers
  • Bullet-nosed design

Benefits

  • Optimal postoperative follow-up​
  • Excellent bio-compatibility​
  • Easy radiological confirmation of implant placement​
  • Easy insertion

ORIO-Ti TLIF

ORIO-Ti TLIF Titanium Cage is a unique anatomic cage with optimum graft cavity volume made from Titanium and incorporates macro features for immediate mechanical fixation and proprietary surface micro texturing to promote osteoblastic differentiation. The combination of roughened topographies at the macro and micro levels allows a more robust fusion process.The cage is designed to be implanted without damaging the vertebral endplates to increase resistance to subsidence.

To allow for optimum intervertebral ossification, all ORIO cages feature a large graft cavity that facilitate filling with bone.

Features

  • Manufactured from Ti 6Al-4V ELI Titanium Alloy
  • Macro & Micro surface features & texturing
  • Fully anodized surfaces
  • Bullet-nosed design

Benefits

  • Stable fixation to bone tissues with excellent biocompatability
  • Improved osseointegration and incorporation into fusion mass
  • Anodized Ti surface increases blood clot retention, increased nano-roughness and favors osseointegration​
  • Easy insertion

You cannot copy content of this page