OsseoTi®  Porous Metal Technology

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OsseoTi®  Porous Metal Technology

Zimmer Biomet’s OsseoTi Porous Metal Technology uses human CT data in combination with 3D printing technology to build a structure that is designed to mimic the architecture of human cancellous bone.

Clinical Results

G7 OsseoTi® Dual Mobility Construct.1

4 Weeks

Integration with host bone in an animal study.2


With architecture designed to mimic the structure of human cancellous bone, the average pore size of 475 Microns has been designed to facilitate cell migration, vascularisation and bone ingrowth.2

Material Strength

It has material strength between that of cancellous and cortical bone, which is designed to facilitate biologic fixation and loading of surrounding bone.2

Proprietary Manufacturing Process

Constructs are printed layer by layer to build a fully-integrated component with solid and porous regions. This process is designed to maintain the consistent porosity and strength necessary to facilitate tissue ingrowth and implant stability.2

Proven Technology

OsseoTi Porous Metal Technology is made from highly biocompatible Ti6AI4V alloy material that has corrosion resistance and a proven history of clinical success.3,4

70% Porosity

Designed to mimic the structure of human cancellous bone