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Innmetec

Innmetec designs and manufactures patient-specific orthopedic implants using advanced CAD/CAM and 3D printing technologies. They also provide digital surgical planning services with 3D simulations to improve procedural precision and patient outcomes.

Medellín, ColombiaFounded 20207300+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Surgical procedures often face challenges with implant fit and pre-operative planning, leading to suboptimal patient outcomes and extended recovery times. Standardized implants may not precisely match individual patient anatomy, and a lack of detailed surgical visualization can increase procedural complexity and risk.

Solution

Innmetec provides custom-designed medical implants and digital surgical planning services to enhance procedural precision and patient recovery. Leveraging advanced CAD/CAM technologies and patient-specific imaging data, the company engineers bone implants that precisely conform to individual anatomical structures. This approach ensures optimal biomechanical integration and aesthetic restoration. Furthermore, Innmetec offers detailed 3D surgical simulations, enabling surgeons to visualize and rehearse complex procedures in a virtual environment before the actual operation. This digital pre-operative planning minimizes intraoperative variability and improves the predictability of surgical results.

Target Audience

Innmetec serves orthopedic surgeons, neurosurgeons, and reconstructive surgeons who require highly customized implants and advanced pre-operative planning tools to address complex anatomical challenges.

Features

  • Patient-specific orthopedic implant design utilizing CT and MRI scan data for precise anatomical replication.
  • Custom implant manufacturing using biocompatible materials, such as PEEK and titanium alloys, through additive manufacturing (3D printing) and subtractive machining.
  • 3D surgical simulation software that generates patient-specific anatomical models for pre-operative planning and visualization.
  • Virtual surgical planning tools that allow for trajectory planning, osteotomy site identification, and implant placement simulation.
  • Integration of patient imaging data into a secure, cloud-based platform for collaborative surgical team access.
  • Design and fabrication of implants for various orthopedic specialties, including craniomaxillofacial, orthopedic trauma, and reconstructive surgery.
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