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Ascot
The cervical plate system must provide the necessary stability of the C2-C7 cervical spine while bone union formation occurs. At the same time, the system should be unobtrusively integrated into the biomechanical system of the cervical spine. ASCOT achieves a balance between maximum stability and minimum stiffness, thereby allowing load sharing with the bone to promote segmental union (Wolf's Law).
With angular variability in its semi-rigid screw/plate connection, ASCOT is able to adapt to the changing anatomical situation during the healing process. The integrated locking mechanism and self-drilling screws allow one-step screw placement and locking, resulting in a system that is efficient in processing and safe for the patient.
Poseidos ST
Material defects – caused by tumors, fractures or infections – put a lot of stress on implants inserted for reconstruction, as it is necessary to cut out the load-bearing structures. Structurally stable requirements for vertebral body replacement implants include adequate support for the cortical bone and reliable mechanics for the vertebral body replacement implant itself. With POSEIDON® ST, the risk of subsidence is minimized by the lower and upper plates, which are as large as possible to ensure the rotational stability of the implant. Reliable mechanics prevent displacement of the implant due to stress reduction at the ends of the plates.



