Vytvoření spánkové kosti pro plánování kochleární implantace s detekcí lícního nervu.

Abstract

This bachelor’s thesis focuses on the design and development of a temporal bone training model for cochlear implantation simulation. The main objective was to create a model with an integrated facial nerve proximity detection system to enhance the safety and effectiveness of surgical procedure training. The methodology involved digital reconstruction of anatomical data from CT scans, subsequent FDM 3D printing, and the implementation of a control system based on the Arduino Nano platform with induction sensors. The result is a functional prototype that allows real-time monitoring of surgical instrument proximity to high-risk anatomical areas. Experimental testing confirmed that the chosen combination of materials and technology provides adequate feedback and reliable detection. This work demonstrates the practical application of modern technologies in developing affordable medical trainers, which contribute to better preparation of future specialists in the field of ENT (Otorhinolaryngology).

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Subject(s)

temporal bone, cochlear implantation, 3D printing, facial nerve, Arduino, surgical trainer

Citation