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大脑听觉系统建模研究进展 被引量:3

Advances in Study of Auditory System Brain Model
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摘要 如今,信息通信技术和生物学的融合发展到了一定阶段,欧盟人脑计划、美国脑计划以及日本脑计划等都在开展相关的脑科学研究,中国也已经开展了中国脑计划。欧盟和美国的两个计划分别投资10亿欧元和45亿美元,都是采用计算机来模拟绘制详细的人脑模型,对人类大脑进行模拟是重要内容。以国内外关于大脑听觉系统研究的论文为对象,通过对大脑听觉系统进行分析,概括出近年来大脑听觉系统的研究热点和动态,并且分析了今后该方向的研究趋势,为我国在该领域的理论研究提供依据和方法。 The integration of the information and communication technology and the biology have developed to a certain stage recently.The Brain Plan of the European Union,the American Brain Program and the Japanese Brain Program have been carrying out the research of the relevant brain science,and the Chinese Brain Program is also underway.The EU and the United States invest one billion euros and 4.5 billion US dollars for their brain plans.Both of the two plans are using computer simulation to draw a detailed model of the human brain,we and simulating the human brain is important content.In this paper,by referencing the paper of the auditory system at home and abroad,and analyzing the auditory system of the brain,we summarized the research focus and dynamics of the auditory system and predicted the future trend in this direction,which provide the basis and methods in the field of the theoretical basis in China.
出处 《计算机科学》 CSCD 北大核心 2016年第S2期1-5,15,共6页 Computer Science
关键词 大脑听觉 听觉系统 听觉建模 脑计划 脑模拟 Auditory brain Auditory system Auditory model Human brain project Brain simulation
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  • 1Hewitt M J, Meddis R. A computer model of amplitude modulation sensitivity of single units in the inferior colliculus. J. Acoust. Soc. Am., 1994; 95(4): 2145-2159
  • 2Tchorz J, Kollmeier B. A model of auditory perception as front end for automatic speech recognition. J. Acoust. Soc.Am., 1999; 106(4): 2040-2050
  • 3Kasper K et al. Exploiting the potential of auditory preprocessing for robust speech recognition by locally recurrent neural networks. ICASSP'97, 1997; 2:1223-1227
  • 4Kleinschmidt Met al. Combining speech enhancement and auditory feature extraction for robust speech recognition.Speech Communication, 2001; 34:75-91
  • 5Parks T W, Weisburn B A. Classificayion of whale and ice sounds with a cochlear model. ICASSP-92, 1992; 2:481-484
  • 6Tucker S, Brown G J. Classification of transient sonar sounds using perceptually motivated features. IEEE Journal of Oceanic Engineering, 2005; 30(3): 588-600
  • 7Allen J B. Cochlear modeling - 1980. ICASSP'81, 1981:766-769
  • 8Jankowski C R et al. A comparison of signal processing front ends for automatic word recognition. IEEE Trans.On Speech and Audio Processing, 1995; 3(4): 286-293
  • 9de Boer E. Synthetic whole-nerve action potentials for the cat. J. Acoust. Soc. Am., 1975; 58:1030-1045
  • 10de Boer E, de Jongh H R, On cochlear encoding: Potentialities and limitations of the reverse correlation technique, J.Acoust. Soc. Am., 1978; 63:115-135

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