Advanced multi-material 3D printing technology creates anatomically accurate hip and pelvis models with realistic soft tissues, enhancing applications in biomechanics, surgical simulations, and implant testing.
This innovative solution leverages advanced multi-material 3D printing technology to develop anatomically accurate hip and pelvis models with integrated soft tissues such as ligaments, muscles, and skin. Traditional models often neglect these elements due to the lack of suitable materials and techniques. By using biomimetic elastomers, these models replicate the elasticity and tactile feedback of human skin, significantly improving realism and expanding their applicability in areas such as biomechanics, surgical simulations, and implant testing.
The technology is currently at TRL 4, with validated processes for printing certain joint components and materials. Future work involves optimizing material selection, developing adhesion strategies, and validating a comprehensive printing process. Further validation will include mechanical and biomechanical testing, surgical simulations, and longevity tests.
University of Waterloo is a public research university in Ontario, Canada, known for an entrepreneurial, STEM‑driven culture. A globally recognized co‑op program places students with employers year‑round, creating direct talent pipelines and de‑risked pathways into sponsored research and contract development. An adjacent research and technology park hosts corporate R&D alongside faculty labs, and the campus sits within the Toronto–Waterloo innovation corridor for ready access to partners, investors, and scale‑up resources. Research is supported by competitive federal funding from Canada’s Tri‑Council agencies (NSERC, CIHR, SSHRC) and international programs. A creator‑owned IP policy and a dedicated tech transfer office enable flexible agreements, licensing, and spinouts.