D2P
FDA 510(k)-cleared D2P® software and 3D Systems printers allow surgeons, radiologists, lab technicians, and device designers to create diagnostic-quality digital 3D models and physical 3D prints easily and quickly. DICOM images are imported into the D2P stand-alone modular software package that consolidates all 3D model segmentation and preparation steps into one workstation. D2P is a cleared medical device intended for pre-operative surgical planning and the production of 3D-printed anatomic models for diagnostic purposes. The unique image segmentation tool set and its advanced virtual reality (VR) visualization allow clinicians and point-of-care (POC) staff to minimize the effort and time associated with the creation of patient-specific anatomic models. Digital models exported from the D2P software can be used in a wide variety of applications including 3D printers, VR devices, surgical planning software, and CAD software.
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Elements Spine SRS
Brainlab's Elements Spine Stereotactic Radiosurgery (SRS) is an advanced software solution designed to optimize the treatment of spinal metastases. The workflow incorporates automation at every step, including anatomical mapping, curvature correction, and target definition, ensuring submillimetric accuracy and consistency. A unique algorithm compensates for variations in spinal curvature, enhancing image fusion accuracy. Automatic segmentation of spinal anatomy utilizes a patented synthetic tissue model to identify and label individual spine levels, facilitating precise dose calculations. The software provides spinal tumor outlining tools for Gross Tumor Volume (GTV) contouring and automatically proposes the corresponding Clinical Target Volume (CTV) and cropped spinal canal object based on International Spine Consortium Guidelines. Integration with AI-powered contouring solutions enables automatic, reliable, and fast delineation of over 200 structures, including lymph nodes.
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Axial3D
Axial3D is dedicated to advancing patient-specific care by transforming healthcare through its 3D medical imaging and 3D patient-specific solutions, making personalized surgical care routine and scalable. Our patented AI-driven, cloud-based platform empowers medical device companies, imaging providers, and hospitals to harness data-rich, accurate 3D models for enhanced surgical planning, improved patient outcomes, and optimized workflows. Our solutions include 3D visualization, 3D mesh files, 3D print-ready files, and 3D printed models, all designed to integrate seamlessly into existing medical workflows. By converting complex DICOM images into precise, actionable 3D data, we boost efficiency, speed, and scalability in patient-specific device development. Our cloud-based platform offers a unique solution for surgeons seeking a comprehensive view of their patient’s anatomy prior to surgery, enhancing the accuracy and precision of surgical planning beyond traditional 2D imaging.
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Materialise Mimics
Materialise Mimics is a comprehensive software platform designed to facilitate the conversion of medical image data into accurate 3D models, supporting a range of applications from personalized device design to advanced anatomical analysis. The platform offers a suite of tools that enable efficient planning, design, and 3D printing of models and guides for cases of varying complexity, directly at the point of care. A key component of the platform is Mimics Core, an advanced 3D medical image segmentation software that streamlines the process from image acquisition to 3D model creation. This tool supports virtual procedure planning and is integral to the platform's capabilities. The Mimics Innovation Suite enhances the platform's functionality by providing advanced tools for engineers and researchers. It simplifies the use of 3D medical image data, making it accessible and beneficial for those aiming to improve patient care through technology.
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