Exploring Deep Cervical Compartments in Head and Neck Surgical Oncology through Augmented Reality Vision: A Proof of

Alessandro Tel1, Marco Zeppieri2, Massimo Robiony1

  • 1Clinic of Maxillofacial Surgery, Head-Neck and NeuroScience Department, University Hospital of Udine, Piazzale S. Maria della Misericordia 15, 33100 Udine, Italy.

PubMed
Abstract

Insights

Virtual surgical planning combined with augmented reality (AR) enhances complex head and neck cancer surgeries. This innovative approach provides real-time anatomical visualization, improving surgical precision and patient outcomes.

Area of Science:

  • Surgical Oncology
  • Medical Imaging
  • Augmented Reality

Background:

  • Virtual surgical planning (VSP) creates digital anatomical replicas for precise preoperative assessment.
  • VSP is underutilized in neck surgery compared to craniofacial surgery due to tissue complexity and lack of navigation.
  • Augmented reality (AR) merges digital plans with the real surgical field for intraoperative guidance.

Purpose of the Study:

  • To investigate the application of VSP and AR in complex head and neck surgical oncology.
  • To assess the feasibility and potential benefits of using AR for intraoperative visualization in neck surgeries.

Main Methods:

  • A series of patients with complex head and neck tumors underwent virtual surgical planning.
  • Surgical plans were imported into a HoloLens headset for intraoperative AR visualization.
  • The study examined the integration of AR into real-time surgical procedures.

Main Results:

  • Preliminary investigation into the use of AR for intraoperative visualization in head and neck oncology.
  • Demonstrated the potential for AR to overlay critical anatomical information during surgery.
  • Facilitated real-time access to patient-specific data within the surgeon's field of view.

Conclusions:

  • AR holds significant promise for enhancing complex head and neck surgical oncology procedures.
  • This technology can aid in locating and preserving vital structures, improving surgical accuracy.
  • The study provides a framework for increased AR implementation in this surgical domain.