Related Concept Videos

Augmented Reality-Based Visualization of a Resected Tumor Specimen04:40

Augmented Reality-Based Visualization of a Resected Tumor Specimen

Source:Carly Fassler1, Liyu Huang1, Kavita Prasad1, Jiayi Xu2, Guansen Tong2, Jie Ying Wu2, Michael C. Topf1,31Department of Otolaryngology – Head and Neck Surgery, Vanderbilt University Medical Center.2Computer Science Department, Vanderbilt University.3Vanderbilt University School of Engineering, Vanderbilt University.This video demonstrates using augmented reality (AR) for tumor resection, where a 3D-scanned tumor specimen is visualized as a hologram on a head-mounted display. Surgeons...
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Pedicle Screw Placement Using an Augmented Reality Head-Mounted Display in a Porcine Model06:18

Pedicle Screw Placement Using an Augmented Reality Head-Mounted Display in a Porcine Model

The augmented reality head-mounted display, Magic Leap, was used in combination with a conventional navigation system to place pedicle screws in a porcine model by adhering to a novel workflow. With a median insertion time of <2.5 min, submillimeter technical accuracy and 100% clinical accuracy were achieved according to...
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Technical Approach for Infrared Tracking for Soft Tissue Navigation with a Holographic Head-Mounted Display and Preclinical Validation10:25

Technical Approach for Infrared Tracking for Soft Tissue Navigation with a Holographic Head-Mounted Display and Preclinical Validation

This protocol offers a guide to implement infrared marker tracking for free-moving phantoms (e.g., organs) and holographic visualization using Augmented Reality. Additionally, it outlines a setup for preclinical validation of holographic navigation systems using electromagnetic tracking on free-moving phantoms.
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Augmented Reality Navigation-Guided Core Decompression for Osteonecrosis of Femoral Head06:17

Augmented Reality Navigation-Guided Core Decompression for Osteonecrosis of Femoral Head

Augmented reality technology was applied to core decompression for osteonecrosis of the femoral head to realize real-time visualization of this surgical procedure. This method can effectively improve the safety and precision of core...
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Combining Augmented Reality and 3D Printing to Display Patient Models on a Smartphone09:26

Combining Augmented Reality and 3D Printing to Display Patient Models on a Smartphone

Presented here is a method to design an augmented reality smartphone application for the visualization of anatomical three-dimensional models of patients using a 3D-printed reference...
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Photorealistic Learned Landscapes for Augmented Reality06:54

Photorealistic Learned Landscapes for Augmented Reality

This paper presents a system for photorealistic 3D reconstruction using 360-degree images, Gaussian Splatting, and virtual reality integration. The approach can be applied to different applications such as education, simulating learning environments; construction, to simulate works off-sites and retrieve metrics; or healthcare, to train autistic people in daily-life tasks.
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