UO
University of Alberta
A surface-independent antifouling coating for implantable devices, prepared on demand.
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Receive a weekly email digest of the latest surgical technology solutions added by the network.Updated Sept 30, 2026
Surgical technologies covers implants, instruments, wound closure and the physical models surgeons train and plan on. On Halo, the solutions cover implant surfaces and structures, steerable and implanted delivery instruments, wound closure and burn care, and anatomical models for training and planning. Sign up to search the full network and post your specific need.
UO
University of Alberta
A surface-independent antifouling coating for implantable devices, prepared on demand.
Bonds polymer dopants to metal implant surfaces dry, at ambient temperature, by abrasive bombardment.
Nature Engineering Solutions Ltd
Auxetic metamaterials for hip implants, aimed at better mechanics and lower infection risk.
UO
University of Tennessee, Knoxville
A fully implanted endoprosthetic limb anchored in residual bone, with tendon attachment points.
UO
University of Tennessee, Knoxville
Laser-cut patterning gives nested concentric tubes different rigidity, improving steerable device control.
An intrathecal catheter route that puts drugs into cerebrospinal fluid for CNS disorders.
Zentraxa Ltd
A sprayable, rapid-cure adhesive for wound closure that carries bioactive additives.
University of California, Davis
A microneedle patch combining collagen scaffolds with pro-angiogenic agents for burn healing.
Topical burn care graded across four clinical severities and not one formulation for all.
University of Genoa
Metal nanotechnology for external skin application, with in vivo wound healing results.
University of Malta
Fused granulate 3D printing of hip joint models with realistic bone properties.
ST
University of Waterloo
Multi-material printing of hip and pelvis models carrying realistic soft tissue.
University of New Mexico
Printable bioinks characterized to match the mechanical behavior of pelvic tissue.
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Universities, startups, and suppliers with solutions in surgical technologies.
Surgical technology organizationsResearchers and inventors advancing surgical technology solutions.
Surgical technology expertsSurgical technologies on Halo leans toward two things: what goes into the body and stays there, and the anatomical models used to rehearse the operation first. On Halo it spans four groups, including implant surfaces and structures, steerable and implanted delivery instruments, and wound closure and burn care.
Stage of development. Work on surgical technologies on Halo comes mostly from university programs. 36% of the solutions are in market. Sponsored research and co-development are the usual partnering routes, and about 27% of the solutions that state terms offer pilot engagements.
Rehearsing on printed anatomy. Half of this set is anatomical models. Teams print hip and pelvis models from CT and MRI with distinct tissue layers, formulate gelatin and rubber blends to match soft tissue, and give a silicone substrate the mechanical response of skin. The model is becoming a product in its own right, not a by-product of imaging.
Coatings that decide how an implant behaves. Implant work is largely surface work: an antifouling coating that is independent of substrate, and a dry ambient-temperature process bonding polymer dopants to metal. What the implant is made of matters less than what the first few microns do.
Closing wounds with materials, not sutures. Wound closure is moving to sprayable and patch formats. One adhesive cures rapidly and carries bioactive additives; a microneedle patch pairs collagen scaffolds with pro-angiogenic agents for burns. Both put the healing agent and the closure in the same step.
Surgical technologies covers what goes into the body during an operation and the instruments and models used to get it there. It spans implant materials and surface coatings, steerable and minimally invasive instruments, wound closure and burn care, and the anatomical models surgeons rehearse and plan on. Device manufacturers and hospital systems drive the demand.
Four examples of surgical technology solutions on Halo include:
The most recently updated surgical technology solutions on Halo include:
There are 412 organizations with surgical technology solutions on Halo, 79 of them universities and research institutions. Among them are University of Alberta, ENBIO Limited, and Nature Engineering Solutions Ltd. Most offer sponsored research or co-development. Sign up to see every organization working in the area and to send them your specific need.
Browsing surgical technology solutions on Halo is free. Sign up to search the full network and save the ones you want. Post your specific need to get exact matches. Organizations reply directly on the platform.
Over the past 12 months, R&D teams on Halo have posted these surgical technology solutions needs:
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