Contemporary mechanics of conductive hearing loss

Q3 Medicine
Aaron Remenschneider MD, MPH, FACS , Jeffrey Tao Cheng PhD
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引用次数: 0

Abstract

The middle ear plays a critical role for the conversion of acoustic energy to mechanical vibrations that subsequently enter the cochlea. It is middle ear impedance matching through ossicular coupling that has enabled land-dwelling vertebrates to hear soft airborne sounds. Conductive hearing loss may result from damage to the delicate middle ear structures following infection, trauma or rapid pressure changes. An understanding of the mechanics of the middle ear significantly improves the oto-surgeon's ability to effectively diagnose conductive hearing loss, localize the responsible lesion and then effectively correct the conduction abnormality. This article reviews some of the basic knowledge of middle ear mechanics for sound transmission, highlights recent advances in developing new techniques to assist in diagnosis of middle ear disease, and finally sheds light on future research aimed at improving the diagnosis and management of middle ear pathology.

传导性听力损失的当代机理
中耳在将声能转化为机械振动并随后进入耳蜗方面起着至关重要的作用。正是由于中耳通过听骨耦合实现了阻抗匹配,陆栖脊椎动物才能听到空气中的轻微声音。传导性听力损失可能是由于感染、外伤或压力急剧变化导致脆弱的中耳结构受损。对中耳力学的了解可大大提高耳鼻喉外科医生有效诊断传导性听力损失、定位病变部位并有效纠正传导异常的能力。本文回顾了中耳传声力学的一些基本知识,重点介绍了在开发新技术辅助诊断中耳疾病方面取得的最新进展,最后对旨在改善中耳病理诊断和管理的未来研究进行了展望。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
46
审稿时长
43 days
期刊介绍: This large-size, atlas-format journal presents detailed illustrations of new surgical procedures and techniques in otology, rhinology, laryngology, reconstructive head and neck surgery, and facial plastic surgery. Feature articles in each issue are related to a central theme by anatomic area or disease process. The journal will also often contain articles on complications, diagnosis, treatment or rehabilitation. New techniques that are non-operative are also featured.
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