Lumbar Fusion
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Transforaminal Lumbar Interbody Fusion
TLIF PEEK CAGE
S33 Spine TLIF Cage has a unique placement procedure and it’s intended to restore the degenerative disc pathologies.
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S33 Spine TLIF Cage is made of a combination of PEEK (ASTM F2026) which is a polymer based composite material and Ti6Al4V-ELI (Grade 23) (ASTM F136). PEEK material’s modulus of elasticity is similar to vertebral bodies and it gives radiolucent imaging
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Circular toothed surface design to minimize the risk of migration
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Multiple footprint options for various surgical solutions
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Pivotable design
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The implantation process is performed by a single instrument
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Enhanced cage-inserter connection, designed to withstand rotational forces
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S33 Spine TLIF Cage provides uninterrupted guidance during operation. It has the capability of movement to both directions
Posterior Lumbar Interbody Fusion
PLIF PEEK CAGE
Standard PLIF Cage
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Enhanced cage-inserter connection, designed to withstand rotational forces
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X-Ray markers for efficient visualization during implantation
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Toothed surface design to minimize the risk of migration
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Easy to introduce with sharp ended design
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Large fusion space
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Anatomical geometry
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Made of a combination of PEEK (ASTM F2026) which is a polymer based composite material and Ti6Al4V-ELI (Grade 23) (ASTM F 136). PEEK material’s modulus of elasticity is similar to vertebral bodies and it gives radiolucent imaging
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Posterior Lumbar Interbody Fusion
Expandable PLIF PEEK CAGE
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Enhanced cage-inserter connection, designed to withstand rotational forces
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Holding on to inferior and superior endplates strongly with unique surface design
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X-Ray markers for efficient visualization during implantation
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Toothed surface design to minimize the risk of migration
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Easy to introduce with sharp ended design which minimize impaction
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Axial fusion space
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Anatomical geometry
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Expansion stopping system is integrated for preventing overexpansion
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Made of a combination of PEEK (ASTM F2026) which is a polymer based composite material and Ti6Al4V-ELI (Grade 23) (ASTM F 136). PEEK material’s modulus of elasticity is similar to vertebral bodies and it gives radiolucent imaging