3D-Printed Benchtop Models
One size fits nobody. Understanding the anatomical variability of the target population is a critical success factor for R&D. This spans from the many off-the-shelf medical device designs to understanding treatment options and evaluating implant fit. Mimics Innovation Suite provides all the tools you need to conduct efficient and reliable analyses, even on large batches of CT or MRI scans.
Use anatomical models to:
Improve bench testing
Use relevant, anatomically accurate models for pre-clinical testing
Facilitate treatment planning
Plan procedures and test device delivery and deployment in a realistic model
Train physicians
Give physicians hands-on experience in delivering and deploying devices
Highlight your product
A 3D-printed anatomical model can be a true eye-catcher at a conference booth
Mimics Innovation Suite enables you to:
- Create a 3D model quickly through automatic segmentation
- Design custom features, like a baseplate and flanges, thanks to our dedicated toolbox
- Automate repetitive steps through scripting
- Generate average and worst-case anatomies with statistical shape modeling
- Ensure 3D printability with our specialized tools
Inspiration
Discover how others are using anatomical analysis:
Grow your knowledge with our support
Learn how to optimize your use of our software with our Academy and customer support. Plus, access the latest software updates and patient leaflets.
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Materialise medical device software may not be available in all markets because product availability is subject to the regulatory and/ or medical practices in individual markets. In countries where no regulatory registration is obtained of Mimics and/or 3-matic Medical, a research version is available. Please contact your Materialise representative if you have questions about the availability of Materialise medical device software in your area.
Other applications for academia
Boost the development of new automated algorithms and support personalization in healthcare.
Automate geometrically accurate and appropriately meshed 3D models for personalized studies.
Conduct efficient and reliable analyses for success in R&D, even on large batches of CT or MRI scans.