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Published on: January 2, 2020
Implementation of an Intraoperative Augmented Reality Environment for Custom-Made Partial Pelvis Replacements-A Proof
Yannik Hanusrichter1,2, Carsten Gebert1,3, Sven Frieler1,4
1Department of Tumour Orthopaedics and Revision Arthroplasty, Orthopaedic Hospital, Volmarstein, Lothar-Gau-Str. 11, 58300 Wetter, Germany.
Abstract:
Background: The use of augmented reality (AR) in orthopaedics is growing rapidly but is mainly limited to pre-operative planning and teaching. This study is one of the first to describe the intraoperative application within revision arthroplasty for the positioning of customised partial pelvic replacements. Methods: In a proof-of-concept study an AR environment was used during surgery in 11 cases to enhance implant positioning. Postoperatively, a voxel-based CT deviation analysis was carried out to determine the COR deviation and the cup plane deviation angle. Additionally, digital implant superimposition was conducted. Results: Implantation was possible in all cases with a mean COR deviation vector of 4.2 (SD 2.5; 1.2-9.3) mm and a cup plane deviation angle of 4.4 (SD 2.5; 0.7-8.1)°. The implant analysis showed a superimposition of 0.69 (SD 0.15; 0.38-0.88) (Dice-Score calculation). Conclusions: This study is able to report promising results for AR in orthopaedic surgery, showing improved intraoperative feedback in complex operations, resulting in increased accuracy. However, the integration of AR poses a new challenge to the surgical team, especially because the AR users are facing a significantly increased level of intraoperative stress. Further development of this auspicious tool, as well as a conceivable combination with navigation, is necessary to facilitate broader usage.

