A mixed reality spatial application rendering volumetric, beating 3D human heart models with interactive pathology slicing and surgical path planning.
Transforming complex 2D CT/MRI DICOM scans into real-time volumetric mixed reality holograms. Students and medical trainees can manipulate 3D anatomical structures in physical room space, observe blood hemodynamics, and simulate surgical incisions with bimanual hand gestures.
Traditional flat medical atlases fail to communicate complex 3D cardiac chamber depth, spatial spatial orientation, and dynamic valve mechanics, leading to steep learning curves.
A passthrough-enabled MR application utilizing spatial anchors and custom volumetric shaders to project interactive 4D cardiac dynamics directly onto student workbenches.
Dr. P. Anitha, Dept of Information Technology
Presented at the National Biomedical Engineering Conclave 2026; received Best Student Innovation Award. Pilot clinical study showed significant improvement in spatial comprehension.
An immersive virtual reality simulation for electrical engineering students and technicians to practice hazardous substation maintenance without real-world electrical danger.
A web-accessible high-fidelity 3D digital twin of the engineering college campus streaming live IoT sensor telemetry and solar energy yields.