Medicalholodeck’s Spatial OS: Train surgery, create digital twins with AI and DICOM, and study human anatomy and medicine

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Convert CT and MRI data into interactive 3D volumes for direct exploration from any angle. Create digital twins from DICOM with AI. Study anatomy using real human dissections or 3D anatomy models.

Work across VR, 3D displays, and standard screens with consistent rendering. Multiple users can access and view it together in real time with individual perspectives. This improves collaboration, clarity in case discussions, and reduces interpretation errors.

Highlights

  • One for all: virtual reality, plus stereoscopic or standard display on one device

  • Advanced 3D: spatial visualization for case review, discussion, and training

  • Fast, precise, secure: local segmentation, PACS connectivity, and HIPAA-compliant security

  • Team collaboration included: shared sessions with up to 40 users

  • Spatial recording on board: capture sessions and replay in VR, 3D, or 2D

The applications

Medicalholodeck provides a suite of apps running on Spatial OS, covering professional and educational use cases. 

Medical Imaging XR enables interactive 3D visualization of patient data. Import CT or MRI data and explore anatomy and pathology in immersive space. 

Medicalholodeck AI provides automatic segmentation of medical imaging data. Identify and isolate anatomical structures for analysis, planning, and education.

Dissection Master XR is a virtual dissection lab based on real human cadavers. Explore multi-layered anatomy in high detail and study structures in true 3D. 

Anatomy Master is a 3D anatomy atlas with detailed male and female models, supporting introductory learning in universities and medical schools.

RecordXR records fully interactive 3D content. Create lessons, document cases, and share recordings for review on VR, displays, or mobile devices.

RecordXR Studio enables advanced recording, editing, and spatial content creation. Create structured lessons, presentations, and reusable training material.

For professionals

Communicate and discuss imaging data more clearly. CT and MRI scans appear as interactive 3D volumes that teams can explore together on screens or in VR.

Communicate: Improve communication with medical images in 3D. See the same anatomy as your colleagues and share the view across specialties to avoid misunderstandings.

Inform and explain: Show patients their medical images in an easy way. Help them understand their diagnosis and upcoming surgery.

Collaborate: Work with your team in a shared 3D space – on screen or in VR. Discuss clinical cases with precise visualization and integrated segmentation.

For education

Teach, train, and collaborate using medical data in real 3D. Anatomy models and CT or MRI datasets can be explored together on VR headsets, stereoscopic 3D displays, or standard screens.

Teach and learn: Explore anatomy in real 3D on VR headsets, stereoscopic displays, or standard 2D screens.

Train: Explore medical imaging in real 3D. Convert CT and MRI data into interactive 3D volumes and inspect anatomy from any angle.

Simulate: Plan surgical approaches in real 3D. Explore entry paths, anatomical landmarks, and procedural steps on patient imaging.

Collaborate: Work in the same 3D dataset. Instructors and students meet with synchronized views across VR headsets, 3D displays, or 2D screens.




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