
A fully interconnected dual lattice titanium structure designed to support continuous bone formation across the entire implant. Each lattice is engineered with distinct pore size ranges, biomimicery and mechanical properties to optimise both fixation and fusion.
Learn more about our devices from the Additive team as well as experienced surgeons.

Most lattice implants rely on repeating unit cells, easier to design, manufacture, and validate. We took a different path: a non-repeating, biomimetic lattice designed to replicate trabecular bone, enhance vascularisation, and natural load distribution. Designed for biology first, not manufacturability.

Two distinct lattice systems work together to create a continuous interconnected network throughout the implant, maintaining full porous communication from endplate to endplate.

Smaller pores (~100–400 μm) are optimised for initial fixation, while larger pores (~400–1000 μm) are optimised for bone ingrowth and vascularisation. Together, they provide function specific pore architecture within a single implant.

We use additive manufacturing to create advanced, non-repeating biomimetic lattices that push beyond the limitations of traditional implant design and validation. With end-to- end control from titanium powder to sterile implant, we deliver architectures others cannot.

Our portfolio includes a comprehensive range of instruments tailored to support a variety of spinal procedures, providing surgeons with reliable and intuitive solutions throughout every stage.