
CARSTEN

Trabecular Stand Alone Cage
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Advanced 3D-Printed Trabecular Titanium: Porous metal architecture mimics native cancellous bone to promote cellular adhesion and accelerate osteointegration.
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Integrated Stand-Alone Construct: Zero-profile fixation system incorporates 2 divergent screws for biomechanical stability, without compromising multi-level fixation capabilities while eliminating the requirement for supplemental anterior plating.
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Anti-Backout Locking Mechanism: Integrated anterior locking interface secures screw heads to prevent hardware migration.
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Anatomical Profiling: Contoured structural geometry maximizes endplate surface contact, load bearing and assists in the restoration of native cervical alignment.
POLAR - B
Cervical Bladed Peek Cage
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Integrated Anchoring System: Zero-profile locking blade mechanism deploys directly into the vertebral endplates to prevent implant migration.
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Intraoperative Precision: Tantalum markers provide precise fluoroscopic visualization for optimal anatomical placement.
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Maximized Graft Volume: Wide central graft window accommodates a high volume of osteobiologics to facilitate robust interbody fusion.

POLAR

Cervical Peek Cage
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Radiolucent PEEK Construction: MRI-compatible material ensures artifact-free postoperative assessment.
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Anatomical Conformity: Contoured profile aligns with endplate geometry to maximize contact area.
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Intraoperative Precision: Integrated tantalum markers facilitate precise radiographic positioning.
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Enhanced Primary Stability: Superior and inferior surface serrations, combined with dual titanium pins,optimize initial fixation and resists migration.
TRIMI
Anterior Cervical Plate System
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Low Profile Architecture: The 2mm plate thickness minimizes anterior protrusion, mitigating the risk of postoperative dysphagia (swallow syndrome) and adjacent soft tissue irritation.
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Superior resistance: Plates made from forged titanium billet offer exceptional load-sharing capabilities within a minimized structural footprint.
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Smart Locking system: Lock&Key design is far superior than other nitinol ring-type locking mechanisms alongside offering easier access in case of revision.

D-FLEX
Titanium Cervical Disc Prosthesis

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Advanced Viscoelastic Core: Constructed with a compressible silicone core integrated between titanium endplates to replicate physiological shock absorption.
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Physiological Kinematics: Engineered to preserve native cervical mobility, permitting unconstrained flexion, extension, lateral bending and axial rotation.
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Pre-Assembled Construct: Streamlined one-piece design eliminates intraoperative assembly, maximizing procedural efficiency and ease of use.
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Anatomical Endplate Integration: Anatomically contoured structural design maximizes surface contact and delivers high biomechanical performance.


