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Noise Exposure on Human Cochlea During Cochleostomy Formation Using Conventional and a Hand Guided Robotic Drill

Xinli Du, Yu Zhang, Nikolaos V. Boulgouris, P.N. Brett, Alistair Mitchell‐Innes, Chris Coulson, Richard Irving, Philip Begg

Year
2020
Citations
2

Abstract

OBJECTIVE: To investigate the disturbance induced in the cochlea during cochleostomy using conventional drill and a hand guided robotic drill. STUDY DESIGN: The study is based on experimental measurements using the Laser Doppler Vibrometer during the drilling processes converted to Sound Pressure Levels (SPL) for comparison. SETTING: The study is based on experimental results of three sets of cochleostomies on human cadaver heads. MAIN OUTCOME MEASURE(S): Robotic drilling, in comparison to the conventional drilling method, creates a consistently lower level of disturbance in cochlea across the hearing frequency range. RESULTS: Robotic drilling, in comparison to the conventional drilling method, creates a consistently lower level of disturbance in cochlea across the hearing frequency range. CONCLUSIONS: It is reasonable to conclude that robotic drilling has a lower possibility of creating acoustic trauma in cochlea that endangers the residual hearing of patients.

Keywords

CochleaMedicineDrillAcousticsNoise (video)DrillingSound pressureAudiologyBiomedical engineeringArtificial intelligence

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