Abstract
Innovation in image-guided procedures has been driven by advances in robotic Cone Beam Computed Tomography (CBCT) systems. A fundamental challenge for CBCT imaging is metal artifacts arising from surgical tools and implanted hardware. Here, we outline how two universal non-circular imaging orbits, optimized for metal artifact reduction, can be implemented in real-time on clinical robotic CBCT systems. Demonstrating potential clinical utility, the universal orbits were implemented during a pedicle screw cervical spine fixation and hip arthroplasty performed on a porcine and ovine cadaver respectively. In both procedures, the universal non-circular orbits noticeably reduced the metal artifacts surrounding the implanted orthopedic hardware, revealing anatomy and soft tissue obscured in current conventional CBCT imaging. This work represents a key step in clinically translating universal orbits, unlocking high quality in-room procedural verification to increase broader use of robotic CBCT systems and reduce the occurrence of secondary corrective surgeries.
Cite
CITATION STYLE
Reynolds, T., Ma, Y., Kanawati, A., Dillon, O., Baer, K., Gang, G., & Stayman, J. (2024). Universal non-circular cone beam CT orbits for metal artifact reduction imaging during image-guided procedures. Scientific Reports, 14(1). https://doi.org/10.1038/s41598-024-77964-9
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.