Reference velocity of a human head in bone conduction hearing: Finite element study

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초록

A whole head or temporal bone has been used in experiments to understand the mechanism of bone conduction (BC) hearing. In these experiments, two assumptions are generally accepted: (1) a promontory can be a representative point to show the motion of a specimen in BC hearing, and (2) the promontory velocity is proportional to a cochlear response so that the higher the promontory velocity, the better the BC hearing. To confirm the two assumptions, we investigated the velocities of various points corresponding to different BC input types and directions in the head. In this investigation, we used the threedimensional finite element model of a human head, including an auditory periphery. Results showed that a single promontory was insufficient to be a representative point to show the motion of a specimen because the specimen could have rotational motion at frequencies below 0.5 kHz and the localized deformation at frequencies above 3 kHz. The promontory velocity had the same pattern as the basilar membrane velocity at low and high frequencies. However, at mid-frequencies between 0.5 and 3 kHz, the promontory did not exhibit the same pattern of velocity as the basilar membrane. Therefore, one's BC hearing ability must be carefully determined on the basis of promontory velocity. (c) 2023 Elsevier B.V. All rights reserved.

키워드

PromontoryForceDisplacementCenter of massMastoidBone conductionMIDDLE-EARAIR-CONDUCTIONINNER-EARSOUNDTRANSMISSIONMOTION
제목
Reference velocity of a human head in bone conduction hearing: Finite element study
저자
Lim, JongwooDobrev, IvoKim, Namkeun
DOI
10.1016/j.heares.2023.108699
발행일
2023-03-01
유형
Review
저널명
Hearing Research
429