Finite Element Analysis of the Difference of Bone-Conducted Responses according to the Young’s Modulus of Skull 유한요소 모델을 이용한 머리뼈의 영률에 따른 골전도 반응 차이 분석

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초록

The bone compression and the inertia from cochlear fluid or middle ear (ME) ossicles, are generally considered to be important components inducing bone-conducted (BC) hearing. To clarify the bone compression effect on the BC hearing caused by variation of Young’s modulus of skull, two different types of three-dimensional finite-element models were used in this study. The FE models were (1) Isolated cochlea model comprising ME and cochlea containing basilar membrane (BM) and (2) Head model comprising the isolated cochlea structure. The model was validated by comparison of cochlear responses such as BM velocities with those of otosclerosis patients’ clinical data. Additionally, results showed that the bone compression effects on a BC hearing is highly depended on the Young’s modulus of a skull. Also, the bone compression effects could be underestimated at low frequencies in temporal bone experiments, whereas the effects could be overestimated at high frequencies in cadaver experiments. © © The Korean Society for Precision Engineering.

키워드

측두골사체 머리이경화증유한요소 모델골압축골전도Temporal boneCadaver headOtosclerosisFinite element modelBone compressionBone conduction
제목
Finite Element Analysis of the Difference of Bone-Conducted Responses according to the Young’s Modulus of Skull 유한요소 모델을 이용한 머리뼈의 영률에 따른 골전도 반응 차이 분석
저자
Lim, JongwooLee, SoominKim, Namkeun
DOI
10.7736/JKSPE.022.078
발행일
2022-09
유형
Article
저널명
한국정밀공학회지
39
9
페이지
663 ~ 667