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环境学术沙龙第624期:解析物质-能源-碳耦合助力碳中和
基于任意子模型的量子信息
量子点三线态传能与有机光催化
Unconventional Spin Currents in Antiferromagnets
报告题目:
听觉系统和可植入听力辅助装置的生物力学
 报告人:
Dr. Rong Z. Gan, Charles E. Foster Chair Professor of Biomedical Engineering, School of Aerospace and Mechanical Engineering, University of Oklahoma, USA
报告时间:
2005-06-29 14:30
报告地点:
生物新馆(生命科学楼)一层报告厅
主办单位:
医学院 生物医学工程系
  简介:

医学院 学术报告

 

报告题目:   Biomechanics of Auditory System and Implantable Hearing Devices

        -听觉系统和可植入听力辅助装置的生物力学

 

简介:     

Biomechanics of Auditory System and Implantable Hearing Devices

 

Hearing impairment is one of the most common physical disabilities in the world. Conductive hearing loss results from dysfunction of the middle ear, and sensorineural hearing loss results from abnormalities within the cochlea or central nervous system. In the past several years, we have used bioengineering methodology, a combined physiological, anatomical and engineering approach through both experimental measurement and computational modeling, to describe ear biomechanics for sound transmission through the external ear canal, middle ear and inner ear, and to develop middle ear implantable hearing devices, a new emerging technology for sound amplification. This talk will report our research accomplishments in those areas including: (1) acoustic-mechanical measurements of the middle ear transfer function for sound transmission in human cadaver ears (or temporal bones) with laser Doppler interferometry; (2) characterization of viscoelastic properties of middle ear tissues such as the eardrum and middle ear suspensory ligaments/muscles with micro-tensile material testing system and digital image correlation method; (3) combination of 3-D reconstruction and finite element (FE) methods to create the accurate FE model of human ear for multi-field coupled analysis of acoustic-mechanical transmission; and (4) design and in vitro testing of middle ear implantable hearing devices for restoration of hearing. 

 

 

联系人:王广志   ( 62783631 2号分机)

 

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