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Tensor network simulation of dynamics and finite-temperature quantum system
物理系colloquium:重离子加速器发展前沿和重大应用
Large N theory of critical Fermi surface
Temporal Entanglement in Dual-Unitary Clifford CircuitswithProbabilistic Mea...
报告题目:
Traveling and non-traveling waves in the mammalian cochlea
 报告人:
MARIO A. RUGGERO PhD
Professor, Northwestern University, USA
Fellow of the Acoustical Society of America
Fellow of the American Association for the Advancement of Science
报告时间:
2013-05-17 15:30
报告地点:
生物新馆143
主办单位:
医学院 生物医学工程系
  简介:
报告题目:Traveling and non-traveling waves in the mammalian cochlea
报告时间: 2013.5.17.下午3:30-4:30,生物新馆143
邀请人: 宫琴,医学院 生物医学工程系
 
报告摘要:
In the mammalian ear, sounds are encoded as cochlear vibrations that are tonotopically organized, i.e., with high and low frequencies maximally stimulating auditory-nerve fibers at basal and apical sites, respectively. Herman von Helmholtz thought that those vibrations might resemble standing waves such as those of piano or harp strings. This view was superseded after George von Békésy described traveling waves which propagated on the basilar membrane of human cadaver cochleae from base to apex. Traveling waves have been described only at a few sites of healthy cochleae in living animals. We have gleaned some of the missing information by studying the phases of responses to tones of auditory-nerve fibers innervating sites throughout the chinchilla cochlea. Collectively, these response phases provide the first general description of organ of Corti traveling waves as a function of both frequency and cochlear place and also reveal a non-traveling wave form of vibration, reminiscent of Helmholtz’s views
 
报告人简介:
Mario Ruggero is well known for his studies of the physiology and biophysics of the mammalian cochlea. he was Hugh Knowles professor of Hearing Sciences at department of Communication Disorders, member of Graduate School Faculty in Northwestern University, USA. He is Fellow of the Acoustical Society of America and the American Association for the Advancement of Science. He was Associate Editor of the Journal of Neuroscience and a member of the editorial Boards of Audiology and Neuro-Otology and the Journal of the Association for Research in Otolaryngology. He has published 73 journal articles, 59 abstracts, 3 book reviews and has co-edited one book.
In the mammalian ear, sounds are encoded as cochlear vibrations that are tonotopically organized, i.e., with high and low frequencies maximally stimulating auditory-nerve fibers at basal and apical sites, respectively. Herman von Helmholtz thought that those vibrations might resemble standing waves such as those of piano or harp strings. This view was superseded after George von Békésy described traveling waves which propagated on the basilar membrane of human cadaver cochleae from base to apex. Traveling waves have been described only at a few sites of healthy cochleae in living animals. We have gleaned some of the missing information by studying the phases of responses to tones of auditory-nerve fibers innervating sites throughout the chinchilla cochlea. Collectively, these response phases provide the first general description of organ of Corti traveling waves as a function of both frequency and cochlear place and also reveal a non-traveling wave form of vibration, reminiscent of Helmholtz’s views
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