video corpo

Cervico-thoraco-lumbar interbody fusion cage CONDUIT™
anteriortitanium3D-printed

Cervico-thoraco-lumbar interbody fusion cage - CONDUIT™ - Depuy Synthes - anterior / titanium / 3D-printed
Cervico-thoraco-lumbar interbody fusion cage - CONDUIT™ - Depuy Synthes - anterior / titanium / 3D-printed
Cervico-thoraco-lumbar interbody fusion cage - CONDUIT™ - Depuy Synthes - anterior / titanium / 3D-printed - image - 2
Cervico-thoraco-lumbar interbody fusion cage - CONDUIT™ - Depuy Synthes - anterior / titanium / 3D-printed - image - 3
Add to favorites
Compare this product

Characteristics

Spinal section
cervico-thoraco-lumbar
Surgical approach
anterior
Material
titanium
Implant characteristics
3D-printed

Description

The CONDUIT™ Interbody Platform is a comprehensive portfolio of 3D-printed porous titanium interbody devices intended to stabilize the spinal segment, restore intervertebral height and to facilitate interbody fusion in the cervical (C2-T1) and lumbar spine (L2-S1) and are designed to mimic the published properties of bone.1 About This Product CONDUIT Interbody Platform is designed to treat cervical and lumbar degenerative disc disease and consists of the following system: Cervical Curved TLIF Lateral ALIF PLIF Each system features a full breadth of sizes, footprints, heights, and angles. Features & Benefits Macrostructure Surface roughness has been shown to have a beneficial effect on cell differentiation and proliferation. Microstructure Open and interconnected scaffolding structure. In-vitro studies have reported greater osteoblastic differentiation in human stem cells cultured on similar porous titanium constructs compared to solid titanium surfaces CONDUIT Interbody Platform are designed to have a porosity of 80%. 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 pores. CONDUIT Interbody Platform are designed to have a pore size of 700μm. Nanostructure Nanoscale features increased osteoblast adhesion as compared to conventional titanium materials. All CONDUIT Implants undergo acid etching which increases surface roughness of implants which in turn increases cell adhesion to the implant and bone formation.

Catalogs

No catalogs are available for this product.

See all of Depuy Synthes‘s catalogs
*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.