Improving Patient Outcomes
Additive Implant’s SureMAX® SA Cervical Standalone System offers a wide range of implant sizes to accommodate patient anatomy as well as a comprehensive set of instrument options to support surgical technique preferences.
The SureMAX®, SureMAX-X® and SureMAX-SA® family of spacers from Additive Implants offers one of the widest ranges of spacer sizes in the industry with options including 7, 10, and 14 degree lordotic angles; footprints of 12x14mm, 14x16mm, 15x18mm, 15x20mm; and heights of 5 through 12mm.
The advantages of titanium with the stiffness of PEEK. This 3D printed titanium spacer has a unique patented design to create uniform end plate coverage and optimize load distribution.
SureMAX®-X offers an industry-leading range of implant sizes; 7º, 10º and 14º lordotic and hyperlordotic angles with footprints of 12 x 14mm, 14 x 16mm, 15 x 18mm, and 15 x 20mm in heights of 5, 6, 7, 8, and 9mm.
The 3D printed, titanium alloy SureMAX® Cervical Spacer offers a roughened porous surface with several unique features on the superior, inferior, and lateral aspects of the implant, designed to effectively engage bone on the vertebral endplates. These features combine to provide an ideal environment for fusion while also helping to resist rotational forces throughout the healing process.
Additive’s designs comprehensive sets of instrument options to support surgical technique preferences. Additive’s modular instrumentation allows each surgeon to have a custom set of instruments based on several different personal preferences including both microscope and non-microscope users.
Novel implant geometries that optimize surface features which improve bone in-growth and fixation to prevent subsidence and thus improve patient outcomes.
Additive’s implants are sterile packed with one of instruments for all three systems. Surgeons can easily change plans without opening additional trays.
3D printing allows Additive to offer a wide range of implant sizes to accommodate patient anatomy
Additive’s designs comprehensive sets of instrument options to support surgical technique preferences. Additive’s modular instrumentation allows each surgeon to have a custom set of instruments based on several different personal preferences including both microscope and non-microscope users.
Intraoperative flexibility thanks to Additive’s sterile packed implants and modular instrumentation.
AI is taking advantage of the opportunity created by advancements in 3D titanium printing technology, which integrates new geometries and material never previously seen in the spinal implant marketplace. By analyzing the loading environment of the implant, a significant advantage has been realized that can outperform legacy cages.
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