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Updated: Sep 16, 2025

Three-dimensional Location Approach with Silk Thread Guided Laparoscopic Segmentectomy for Liver Tumor
Published on: May 23, 2025
Improved tumour localisation during minimally invasive liver surgery using augmented reality: a retrospective study
Florian Martinet-Kosinski1, Bertrand Le Roy2,3,4, Yamid Espinel Lopez4,5
1Department of HPB and Digestive Surgery, Clermont-Ferrand University Hospital Estaing, 1 Place, Lucie & Raymond Aubrac, 63003, Clermont-Ferrand Cedex, France.
Background:
Minimally invasive liver surgery (MILS) decreases postoperative morbidity but presents specific difficulties, including precise tumour localisation. Conversion to open surgery is sometimes necessary because the tumour cannot be visualised. We previously proposed Hepataug, an augmented reality (AR) software for laparoscopic liver surgery that enables a deformable 3D model of a patient's liver to be merged semi-automatically with the image on the laparoscopic screen during surgery. The aim of this study was therefore to evaluate the contribution of AR to reducing the rate of conversion but without worsening resection margins.
Methods:
All patients who underwent MILS between 2017 and 2023 were included and divided into two groups depending on whether AR guidance was used during surgery (AR+ group, n = 33) or not (AR- group, n = 212). The two groups were compared in terms of perioperative outcomes, and particularly the rate of conversion to laparotomy because of a failure to locate the tumour. A propensity score analysis was implemented using the inverse probability of treatment weighting method.
Results:
The conversion rate was zero in the AR+ group, while six patients in the AR- group required necessitated conversion to laparotomy to detect the tumour. AR increased operative time by around 10%, with no significant differences in terms of resection margins and postoperative complications (biliary fistula, Dindo-Clavien grade) between the two groups.
Conclusion:
Our study showed that AR could successfully guide the intraoperative localisation of liver tumours and avoid conversion due to an intraoperative non-visualisation of tumours. In addition, AR did not increase postoperative complications or operative times, and could easily be applied during surgery.
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