Electromagnetic Surgical Navigation for Accurate Pediatric Tumor Localization: A Preclinical Animal Cadaver Study

Background: Localization of non-palpable, non-visible, and difficult location tumors in children can be surgically complex. Incomplete resections upstage the tumor, leading to a significant reduction in survival and the intensification of adjuvant treatment, affecting quality of life. Surgical navigation set-ups showed promising results in adults but have not yet been validated in complex pediatric oncology surgery. In this study, an in-house developed electromagnetic surgical navigation set-up was evaluated in a pre-clinical cadaver study. Methods: Pediatric oncology surgeons (n = 8) performed navigated tumor resection in eight simulated surgeries. Embalmed piglets with tumors simulated through insertion underwent preoperative CT imaging for 3D modeling. Navigation was initialized with an ultrasound-based registration procedure. During the procedures, the surgeons had to localize and remove the simulated tumors using the navigation set-up, and the ease of use was evaluated by the system usability score (SUS). The registration and localization accuracies were calculated with the surface and target registration errors, respectively. Results: The registration was successful in 7/8 experiments. The median surface and target registration errors were <2 mm and <3 mm, respectively. The surgeons scored above average acceptance of the navigation set-up with a median SUS of 72 (IQR: 62–80). Conclusions: The navigation set-up was successful overall, with surgeons being satisfied concerning the usability and accuracy of the technique. This study supports progression toward clinical evaluation.

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Publication Details

Journal
Cancers
Published
2026-09-01
DOI
https://doi.org/10.3390/cancers18172831
Primary Topic
Augmented Reality Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Electromagnetic Surgical Navigation for Accurate Pediatric Tumor Localization: A Preclinical Animal Cadaver Study

Matthijs Fitski, Alida F. W. van der Steeg, Jasper M. van der Zee, Harald C. Groen et al.
Cancers
Augmented Reality Applications
article

Electromagnetic Surgical Navigation for Accurate Pediatric Tumor Localization: A Preclinical Animal Cadaver Study

Matthijs Fitski, Alida F. W. van der Steeg, Jasper M. van der Zee, Harald C. Groen, Michiel A. J. van de Sande, Marijn A. J. Hiep, Guus M.J. Bökkerink, Marc H. W. A. Wijnen, Stefanie Veraa, Wout J. Heerink, Vera J. van Boheemen
article en

Abstract

Background: Localization of non-palpable, non-visible, and difficult location tumors in children can be surgically complex. Incomplete resections upstage the tumor, leading to a significant reduction in survival and the intensification of adjuvant treatment, affecting quality of life. Surgical navigation set-ups showed promising results in adults but have not yet been validated in complex pediatric oncology surgery. In this study, an in-house developed electromagnetic surgical navigation set-up was evaluated in a pre-clinical cadaver study. Methods: Pediatric oncology surgeons (n = 8) performed navigated tumor resection in eight simulated surgeries. Embalmed piglets with tumors simulated through insertion underwent preoperative CT imaging for 3D modeling. Navigation was initialized with an ultrasound-based registration procedure. During the procedures, the surgeons had to localize and remove the simulated tumors using the navigation set-up, and the ease of use was evaluated by the system usability score (SUS). The registration and localization accuracies were calculated with the surface and target registration errors, respectively. Results: The registration was successful in 7/8 experiments. The median surface and target registration errors were <2 mm and <3 mm, respectively. The surgeons scored above average acceptance of the navigation set-up with a median SUS of 72 (IQR: 62–80). Conclusions: The navigation set-up was successful overall, with surgeons being satisfied concerning the usability and accuracy of the technique. This study supports progression toward clinical evaluation.

CancersVol. 18(17)
Utrecht University (NL), Leiden University Medical Center (NL), The Netherlands Cancer Institute (NL), Oncode Institute (NL), Princess Máxima Center (NL), University of Twente (NL)
KWF Kankerbestrijding
Good health and well-being
Openalex Percentile: Top 13%
Augmented Reality Applications
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