ConforMIS
Restor3d is dedicated to transforming healthcare through personalized 3D-printed orthopedic implants, leveraging advanced technology such as AI, digital health solutions, and additive manufacturing to improve patient outcomes. The company emphasizes innovation, speed, and a data-driven approach to create patient-specific solutions that enhance surgical results and patient care.
Industries
Nr. of Employees
large (251-1000)
ConforMIS
Billerica, Massachusetts, United States
Patents
Systems and methods for manufacturing, preparation and use of blanks in orthopedic implants
US-11419726-B2
View DetailsKinematic and parameterized modeling for patient-adapted implants, tools, and surgical procedures
US-11229519-B2
View Details
Systems and methods for manufacturing, preparation and use of blanks in orthopedic implants
US-11419726-B2
View DetailsKinematic and parameterized modeling for patient-adapted implants, tools, and surgical procedures
US-11229519-B2
View DetailsProducts
Personalized total knee implant system
A knee arthroplasty system designed from patient CT data to match individual anatomy; components use standard orthopaedic materials and are intended for total or partial knee replacement.
Personalized total hip implant system
A custom primary total hip replacement system designed from CT imaging to replicate patient anatomy, with corresponding patient-specific surgical instruments and reaming tools.
Personalized total ankle implant system
A 3D-printed total ankle implant system designed to match patient bone geometry and provide multi-planar motion, accompanied by patient-specific instruments.
iTotal
A patient-specific cruciate-retaining knee replacement system designed to match individual patient anatomy, restore natural kinematics, and reduce sizing compromises common with off-the-shelf implants.
iTotal CR Knee Replacement System
A total knee replacement system that uses CT-scan data to design a customized, patient-matched anatomic femoral component to avoid sizing compromises and reduce post-operative pain.
iTotal PS
Patient-conforming posterior stabilized knee replacement system designed using proprietary 3D imaging to match the patient's original anatomy and eliminate sizing compromises.
Personalized total knee implant system
A knee arthroplasty system designed from patient CT data to match individual anatomy; components use standard orthopaedic materials and are intended for total or partial knee replacement.
Personalized total hip implant system
A custom primary total hip replacement system designed from CT imaging to replicate patient anatomy, with corresponding patient-specific surgical instruments and reaming tools.
Personalized total ankle implant system
A 3D-printed total ankle implant system designed to match patient bone geometry and provide multi-planar motion, accompanied by patient-specific instruments.
iTotal
A patient-specific cruciate-retaining knee replacement system designed to match individual patient anatomy, restore natural kinematics, and reduce sizing compromises common with off-the-shelf implants.
iTotal CR Knee Replacement System
A total knee replacement system that uses CT-scan data to design a customized, patient-matched anatomic femoral component to avoid sizing compromises and reduce post-operative pain.
iTotal PS
Patient-conforming posterior stabilized knee replacement system designed using proprietary 3D imaging to match the patient's original anatomy and eliminate sizing compromises.
Services
Create individualized implant designs and 3D surgical plans from patient CT scans and deliver the plan to surgeons in advance of surgery.
In-house production of patient-specific metal implants and 3D-printed surgical instruments, including final inspection, sterilization, and sterile packaging for delivery to the operating facility.
Qualify imaging centers to capture CT scans suitable for 3D modeling and perform CT image processing required for implant design and surgical-planning workflows.
Create individualized implant designs and 3D surgical plans from patient CT scans and deliver the plan to surgeons in advance of surgery.
In-house production of patient-specific metal implants and 3D-printed surgical instruments, including final inspection, sterilization, and sterile packaging for delivery to the operating facility.
Qualify imaging centers to capture CT scans suitable for 3D modeling and perform CT image processing required for implant design and surgical-planning workflows.
Expertise Areas
- Personalized orthopaedic implant design
- Additive manufacturing for medical devices
- Pre-operative surgical planning and guided placement
- Biomaterials for osseointegration
Key Technologies
- Additive manufacturing (3D printing)
- CT-based 3D modeling and segmentation
- AI-driven design automation
- Titanium alloy fabrication