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Lumbar interbody fusion cage CONDUIT™
lateraltitanium

lumbar interbody fusion cage
lumbar interbody fusion cage
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Characteristics

Spinal section
lumbar
Surgical approach
lateral
Material
titanium

Description

CONDUIT™ Interbody Platform | EIT™ Cellular Titanium 3D printed cellular titanium implants that feature 80% porous macro-, micro- and nanostructures, are designed to mimic cortical and cancellous bone, and facilitate fusion.1,2 BONE-MIMICKING CELLULAR TITANIUM MATERIAL – Cellular structure of the material is designed to mimic the published properties of bone and facilitate fusion EXCELLENT VISUALIZATION – Ability to clearly visualize the cage intra- and post-operatively on imaging modalities without interference3,4 TARGETED MODULUS OF ELASTICITY – Modulus of Elasticity similar to cancellous bone Surface roughness has been shown to have a beneficial effect on cell differentiation and proliferation in in-vitro studies of osteoblast-like cells cultured on similar roughened titanium materials MICROSTRUCTURE In-vitro studies have reported greater osteoblastic differentiation in human stem cells cultured on similar porous titanium constructs compared to solid titanium surfaces9 In-vivo studies with similar porous titanium materials show that bony in-growth is increased at the 500-700 μm pore size range compared to larger or smaller pores10-12 The porosity of cancellous human bone is typically 50-90%13 Based on this published science, CONDUIT™ Implants are designed with 80% porosity and 700 μm pore size NANOSTRUCTURE Similar titanium materials with nanoscale features have shown in in-vitro studies to lead to increased osteoblast adhesion when compared to conventional titanium materials All CONDUIT Implants undergo acid etching and heat treatment to promote micro-and nanoscale surface roughness1

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.