
Elevation Spine was granted FDA 510(k) Clearance to market Saber-C AVIA. The system is available immediately for surgical use in the United States.
The implant is engineered as a zero-profile anterior cervical discectomy and fusion ACDF construct with the biomechanical stability historically associated with traditional plating, and features a porous 3D-printed titanium interbody with both spike and screw fixation options.
The new system design provides a slim, lower-profile workflow, with additions and refinements across multiple instruments. The majority of the core Saber-C spike instruments have been updated for more precise spike delivery, while new Saber-C screw instruments have been added, including a very low-profile screw inserter. Saber-C AVIA ships with both spike and screw instrumentation in a single tray for every case.
The porous 3D-printed titanium interbody has a 55% porosity lattice architecture engineered to mimic trabecular bone. The porous structure of Saber-C AVIA is associated with bone ingrowth in preclinical data. The implant is available in 6° lordotic and 12° hyperlordotic options with a large central graft window.
Source: Elevation Spine
Elevation Spine was granted FDA 510(k) Clearance to market Saber-C AVIA. The system is available immediately for surgical use in the United States.
The implant is engineered as a zero-profile anterior cervical discectomy and fusion ACDF construct with the biomechanical stability historically associated with traditional plating, and features a...
Elevation Spine was granted FDA 510(k) Clearance to market Saber-C AVIA. The system is available immediately for surgical use in the United States.
The implant is engineered as a zero-profile anterior cervical discectomy and fusion ACDF construct with the biomechanical stability historically associated with traditional plating, and features a porous 3D-printed titanium interbody with both spike and screw fixation options.
The new system design provides a slim, lower-profile workflow, with additions and refinements across multiple instruments. The majority of the core Saber-C spike instruments have been updated for more precise spike delivery, while new Saber-C screw instruments have been added, including a very low-profile screw inserter. Saber-C AVIA ships with both spike and screw instrumentation in a single tray for every case.
The porous 3D-printed titanium interbody has a 55% porosity lattice architecture engineered to mimic trabecular bone. The porous structure of Saber-C AVIA is associated with bone ingrowth in preclinical data. The implant is available in 6° lordotic and 12° hyperlordotic options with a large central graft window.
Source: Elevation Spine
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JV
Julie Vetalice is ORTHOWORLD's Editorial Assistant. She has covered the orthopedic industry for over 20 years, having joined the company in 1999.





