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Stratasys PolyJet technology and Materialise FDA-cleared software now most versatile 3D printing system for medical models.
November 27, 2018
By: Business Wire
Further bringing 3D printed medical models to life, Stratasys is expanding the suite of printers and materials validated by its collaborator Materialise as part of FDA-cleared Materialise Mimics inPrint software. The end result is the most versatile 3D printing system for point-of-care across hospitals and physicians—advancing production of patient-specific, life-like anatomical models for diagnostic purposes in conjunction with other tools and expert clinical judgment. PolyJet multi-material and multi-color solutions validated now include the J750 and J735 3D Printers and the high-performance desktop Objet30 Prime 3D Printer. Materialise Mimics inPrint is the first and currently only 3D printing software cleared by the FDA to create anatomical models for patient care. The software is designed to allow physicians and hospitals to leverage 3D printing at point-of-care—building a trusted and reliable source for surgical planning and interdisciplinary communication. “Historically, pre-surgical planning relied on 2D imaging requiring physicians to mentally reconstruct the patient anatomy. But 3D printing evolves this approach by putting precise replicas of patient anatomy directly in physician hands. Our collaboration with Materialise is a huge step towards unlocking the potential of this technology for patient care,” says Eyal Miller, Head of Healthcare Business Unit, Stratasys. “Now the 3D printer that every hospital needs to power their medical modeling comes with additional options for an FDA-cleared software solution.” In March of 2018, Materialise Mimics inPrint was cleared by the FDA, becoming the only solution with 510(k) clearance as an end-to-end 3D printing solution, as well as a fully comprehensive 3D printing solution for anatomical modeling. According to company reports, of the top 20 U.S. hospitals as ranked by U.S. News & World Report, 16 have implemented a medical 3D printing strategy using Materialise Mimics technology.
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