马富银, 吴九汇. 耳蜗力学研究进展[J]. 力学与实践, 2014, 36(6): 685-715. DOI: 10.6052/1000-0879-13-477
引用本文: 马富银, 吴九汇. 耳蜗力学研究进展[J]. 力学与实践, 2014, 36(6): 685-715. DOI: 10.6052/1000-0879-13-477
MA Fuyin, WU Jiuhui. PROGRESS IN MECHANICS OF THE COCHLEA[J]. MECHANICS IN ENGINEERING, 2014, 36(6): 685-715. DOI: 10.6052/1000-0879-13-477
Citation: MA Fuyin, WU Jiuhui. PROGRESS IN MECHANICS OF THE COCHLEA[J]. MECHANICS IN ENGINEERING, 2014, 36(6): 685-715. DOI: 10.6052/1000-0879-13-477

耳蜗力学研究进展

PROGRESS IN MECHANICS OF THE COCHLEA

  • 摘要: 耳蜗力学是听觉科学和生理声学研究的核心话题,同时也是一个极具代表性的生物力学话题. 深入总结和揭示耳蜗力学特性能够推动相关问题的深入研究和促进心理声学的发展与应用. 该文分宏观力学和微观力学两部分进行综述,然后结合近几年的研究动态,总结耳蜗力学的发展趋势和应用前景. 表明耳蜗作为一个杰出的频率选择和高灵敏度的声信号感应器官,可以对20~20 000 Hz 这样跨度达千倍的频率做出精确响应,且刺激信号可以放大4 000 倍以上.

     

    Abstract: The mechanics of cochlea is the core of hearing sciences and physiological acoustics, as well as a representative biomechanics topic. The study of cochlear mechanical properties could promote the related studies of psychoacoustics. This paper reviews the mechanics of the cochlea in two parts, the macro and micro mechanics, focusing on the development trend of the cochlear mechanics and application prospects. It is suggested that the cochlea is a part of the inner ear and its mechanical response provides us with many aspects of our amazing sensitive and selective hearing, with an accurate frequency response from 20~20 000 Hz and with the stimulus signal being able to be amplified more than 4 000 times.

     

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