Three-dimensional Printed Trainer in Endoscopic Middle Ear Surgery
Publication date
2025-12-01
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Abstract
OBJECTIVE: The primary objective of this study was to test an in-house developed and 3D-printed endoscopic middle ear surgery trainer (EEST) that replicates patient-specific external auditory canal (OEAC) anatomy. The trainer is designed to train ENT residents and surgeons in navigating OEAC anatomic variability and to improve hand-eye coordination. METHODS: The EEST was designed using segmentations from temporal bone imaging from a human cadaveric head. Five 3D-printed models were created using photopolymer resin, incorporating gradual augmentations to the scutum and the bulge of the anterior bony wall. A single surgeon performed surgical procedures on these models and documented his experience. In addition, 3 surgeons and 2 experienced residents tested one model and completed a content and face validity questionnaire. RESULTS: In this pilot study, an experienced ENT surgeon successfully completed surgical tasks in all 5 EEST models. Scutum resection was required in 4 simulations. The EEST demonstrated an overall mean Likert scale rating of 3.9 (SD=0.4) on face validity and a content validity rating of 4.5 (SD=0.3) when tested by three surgeons and 2 residents. CONCLUSION: This study offers a valuable start for further development of an affordable, 3D-printed, patient-specific, surgical trainer for endoscopic middle ear surgery.
Keywords
3D-printed, Endoscopic surgery, Endoscopic surgery trainer, Middle ear surgery, Patient-specific, Otorhinolaryngology, Sensory Systems, Clinical Neurology, Journal Article
Citation
Jellema, M, Buter, M, Blijleven, E E, Willemsen, K, Nguyen, H C, Stokroos, R J, Wegner, I & Thomeer, H G 2025, 'Three-dimensional Printed Trainer in Endoscopic Middle Ear Surgery', Otology & Neurotology, vol. 46, no. 10, pp. 1214-1220. https://doi.org/10.1097/MAO.0000000000004660