LimesVet
Provider of 3D-technology services for veterinary medicine: converts diagnostic imaging into digital and physical anatomical models, designs patient-specific surgical guides and custom implants, and manages additive-manufacturing workflows through an in-house team and partner network. Services target surgical planning, implant design, and rehabilitation support for small-animal cases.
Industries
Nr. of Employees
small (1-50)
Products
Patient-specific titanium/metal implants
Custom-designed metal implants produced by additive manufacturing and post-processed for limb, spinal and cranial applications.
Patient-specific surgical drilling and cutting guides
Custom guides designed to control instrument orientation and placement for precise bone cuts and screw trajectories.
3D-printed anatomical models
Physical anatomical models produced at 1:1 or scaled sizes for planning, rehearsal and owner communication.
Custom external orthoses/prosthetic integration (via partner collaboration)
Integration of custom external orthoses and prosthetics into post-surgical rehabilitation through partnership with a specialized orthotics manufacturer.
Patient-specific titanium/metal implants
Custom-designed metal implants produced by additive manufacturing and post-processed for limb, spinal and cranial applications.
Patient-specific surgical drilling and cutting guides
Custom guides designed to control instrument orientation and placement for precise bone cuts and screw trajectories.
3D-printed anatomical models
Physical anatomical models produced at 1:1 or scaled sizes for planning, rehearsal and owner communication.
Custom external orthoses/prosthetic integration (via partner collaboration)
Integration of custom external orthoses and prosthetics into post-surgical rehabilitation through partnership with a specialized orthotics manufacturer.
Services
Digital modelling of anatomical structures and device geometries using polygonal, NURBS and parametric tools for veterinary cases.
Creation of visual 3D models from diagnostic imaging for clinical assessment and surgical planning.
Surface scanning of anatomical regions to complement imaging-based models and support reconstruction.
Design and manufacture of patient-specific surgical guides to constrain instruments and improve intraoperative accuracy.
Design and manufacture of custom internal stabilization devices and implants produced from surgical metal powders with surface finishing appropriate to function.
Production of anatomical models, surgical guides and implants using multiple additive-manufacturing technologies and partner facilities for metal printing and post-processing.
Digital modelling of anatomical structures and device geometries using polygonal, NURBS and parametric tools for veterinary cases.
Creation of visual 3D models from diagnostic imaging for clinical assessment and surgical planning.
Surface scanning of anatomical regions to complement imaging-based models and support reconstruction.
Design and manufacture of patient-specific surgical guides to constrain instruments and improve intraoperative accuracy.
Design and manufacture of custom internal stabilization devices and implants produced from surgical metal powders with surface finishing appropriate to function.
Production of anatomical models, surgical guides and implants using multiple additive-manufacturing technologies and partner facilities for metal printing and post-processing.
Expertise Areas
- Personalized veterinary implants
- Additive manufacturing for medical devices
- Anatomical visualization from CT/MRI
- Patient-specific surgical guide design
Key Technologies
- Additive manufacturing (FDM, SLA/DLP, SLS, metal powder bed processes)
- CT/MRI DICOM segmentation and processing
- Polygonal, NURBS and parametric CAD modelling
- Surface 3D scanning
News & Updates
Overview and tested recommendations for sterilizing printed surgical guides, including chemical high-level disinfectants, ethylene oxide gas, and autoclaving; recommendations tied to material and printing technology.
Comparison of custom 3D-printed implants and traditional implants including case examples of implant use and bone integration outcomes.
Case-based discussion of hybrid surgical approaches combining standard implants and custom 3D-printed components for complex orthopedic cases.
Description of service workflow, benefits of 3D visualization and printed models for preoperative planning and how clinics can integrate these services.
Overview and tested recommendations for sterilizing printed surgical guides, including chemical high-level disinfectants, ethylene oxide gas, and autoclaving; recommendations tied to material and printing technology.
Comparison of custom 3D-printed implants and traditional implants including case examples of implant use and bone integration outcomes.
Case-based discussion of hybrid surgical approaches combining standard implants and custom 3D-printed components for complex orthopedic cases.
Description of service workflow, benefits of 3D visualization and printed models for preoperative planning and how clinics can integrate these services.