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Otolaryngol Head Neck Surg ; 162(3): 343-345, 2020 03.
Article in English | MEDLINE | ID: mdl-31961771

ABSTRACT

We describe a device engineered for realistic simulation of myringotomy and tympanostomy tube insertion that tracks instrument placement and objectively measures operator proficiency. A 3-dimensional computer model of the external ear and cartilaginous external auditory canal was created from a normal maxillofacial computed tomography scan, and models for the bony external auditory canal and tympanic cavity were created with computer-aided design software. Physical models were 3-dimensionally printed from the computer reconstructions. The external auditory canal and tympanic cavity surfaces were coated with conductive material and wired to a capacitive sensor interface. A programmable microcontroller with custom embedded software completed the system. Construct validation was completed by comparing the run times and total sensor contact times of otolaryngology faculty and residents.


Subject(s)
Computer-Assisted Instruction/methods , Ear, Middle/diagnostic imaging , Ear, Middle/surgery , Middle Ear Ventilation/education , Middle Ear Ventilation/methods , Surgery, Computer-Assisted/methods , Tomography, X-Ray Computed , Computer Simulation , Computer-Aided Design , Humans , Models, Anatomic , Otolaryngology/education , Otolaryngology/instrumentation , Printing, Three-Dimensional , Software
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