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Details

Autor(en) / Beteiligte
Titel
Telestration with augmented reality for visual presentation of intraoperative target structures in minimally invasive surgery: a randomized controlled study
Ist Teil von
  • Surgical endoscopy, 2022-10, Vol.36 (10), p.7453-7461
Ort / Verlag
New York: Springer US
Erscheinungsjahr
2022
Quelle
SpringerLink
Beschreibungen/Notizen
  • Aims In minimally invasive surgery (MIS), intraoperative guidance has been limited to verbal communication without direct visual guidance. Communication issues and mistaken instructions in training procedures can hinder correct identification of anatomical structures on the MIS screen. The iSurgeon system was developed to provide visual guidance in the operating room by telestration with augmented reality (AR). Methods Laparoscopic novices ( n  = 60) were randomized in two groups in a cross-over design: group 1 trained only with verbal guidance first and then with additional telestration with AR on the operative screen and vice versa for group 2. Training consisted of laparoscopic basic training and subsequently a specifically designed training course, including a porcine laparoscopic cholecystectomy (LC). Outcome included time needed for training, performance with Global Operative Assessment of Laparoscopic Skills (GOALS), and Objective Structured Assessment of Technical Skills (OSATS) score for LC, complications, and subjective workload (NASA-TLX questionnaire). Results Telestration with AR led to significantly faster total training time (1163 ± 275 vs. 1658 ± 375 s, p  < 0.001) and reduced error rates. LC on a porcine liver was performed significantly better (GOALS 21 ± 5 vs. 18 ± 4, p  < 0.007 and OSATS 67 ± 11 vs. 61 ± 8, p  < 0.015) and with less complications (13.3% vs. 40%, p  < 0.020) with AR. Subjective workload and stress were significantly reduced during training with AR (33.6 ± 12.0 vs. 30.6 ± 12.9, p  < 0.022). Conclusion Telestration with AR improves training success and safety in MIS. The next step will be the clinical application of telestration with AR and the development of a mobile version for remote guidance.

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