BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure t
BEE®PLIF cages have been specially adapted to suit the local anatomy to ensure the operative outcome to the greatest extent possible. BEE®PLIF cages are made of titanium alloy in accordance with ASTM F3001 and are produced in an additive manufacturing process. The implants are available in various heights, lengths and lordosis angles. The cranial and caudal side of the implant is rough to achieve a good degree of anchoring of the implant.
MAX
Intervertebral Fusion Device With Bone Graft, Lumbar
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL
THE AUDERE C SPINAL INTERVETEBRAL BODY FUSION DEVICE IS A CERVICAL INTERVETEBRAL BODY FUSION DEVICE THAT IS IMPLANTED INTO THE INTERVERTEBRAL BODY SPACE TO IMPROVE STABILITY OF THE SPINE WHILE SUPPORTING FUSION. A VARIETY OF IMPLANT SIZES ARE PROVIDED TO ACCOMMODATE INDIVIDUAL PATIENT ANATOMY.
CAVUX® Cervical Cages are titanium constructs offered in various footprints and
CAVUX® Cervical Cages are titanium constructs offered in various footprints and heights. All CAVUX® Cervical Cages are manufactured from implant grade titanium alloy (6Al-4V ELI Titanium). The implants are single-use only.
CAVUX® Cervical Cages are titanium constructs offered in various footprints and
CAVUX® Cervical Cages are titanium constructs offered in various footprints and heights. All CAVUX Cervical Cages are manufactured from implant grade titanium alloy (6Al-4V ELI Titanium). The implants are single-use only.