期刊文献+

嗅觉神经系统识别机制模型研究进展 被引量:2

Research Progress of the Olfactory Neural System Recognition Model
下载PDF
导出
摘要 相对人体其他的感觉系统,嗅觉神经系统是目前人们了解得较少的感觉神经系统。近来的科学研究表明,对复杂的嗅觉系统的研究有助于人们了解人体整个感觉系统的工作原理。本文以嗅觉神经系统的时空编码和解码机制研究为重点,介绍了近年来国际上广泛研究的、基于嗅觉生理解剖基础之上的嗅觉神经系统识别机制模型的研究工作。最后,结合我们目前的研究工作对嗅觉系统识别模型研究的发展进行了展望。 Compared with other sensory system, olfactory neural system may be the most unknown one. And it is reported that the research of the complicated olfactory system is beneficial to clarifying the whole mechanism of the sensory system. Focused on spatiotemporal coding and decoding mechanism, the studies on the olfactory neural system recognition models are especially introduced. Finally, this paper presents the research work carried out in our lab, and prospects the development of this field in the future.
出处 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2008年第1期200-203,共4页 Journal of Biomedical Engineering
基金 国家自然科学基金资助项目(30300083)
关键词 嗅觉神经系统 识别模型 时空编码 解码 Olfactory neural system Recognition model Spatioternporal coding Decoding
  • 相关文献

参考文献18

  • 1Mozell MM. Evidence for a chromatographic model of olfaction. The Journal of General Physiology, 1970; 56(1) :46
  • 2Mozell MM, Sheehe PR, Swieck SW, et al. A parametric study of the stimulation variables affecting the magnitude of the olfactory nerve response. The Journal of General Physiology, 1984; 83(2) : 233
  • 3Hahn I, Scherer PW, Mozell MM. A mass transport model of olfaction. Journal of Theoretical Biology, 1994; 167(2) : 115
  • 4Yao Y, Freeman WJ. Model of biological pattern recognition with spatially chaotic dynamics. Neural Networks, 1990; 3(2) : 153
  • 5Freeman WJ. Mesoscopic neurodynamics. From neuron to brain. Journal of Physlology(Paris), 2000; 94(5-6):303
  • 6Axel R, Buck LB. The nobel assembly at karolinska institutet has today decided to award: The Nobel Prize in Physiology or Medicine for 2004, http://nobelprize.org/medicine/laurestes/2004/press.huml
  • 7Buck LB, Axel R. A novel multigene family may encode odorant receptors.a molecular basis for odor recognition. Cell, 1991; 65 (1):175
  • 8Mori K, Nagao H, Yoshihara Y. The olfactory bulb:ooding and processing of odor molecule information. Science, 1999; 286(22) :711
  • 9Gray CM, Konig P, Engel AK, et al. Oscillatory responses in cat visual cortex exhibit inter-columnar synchronization which reflects global stimulus properties. Nature, 1989; 338(6213):334
  • 10Kashiwadani H, Sasaki YF, Uchicla N, et a . Synehronized oscil-htory discharges of mitral/tufted cells with different molecular receptive ranges in the rabbit olfactory bulb. The American Physiological Society, 1999; 82(4) : 1786

二级参考文献22

  • 1Wu YC, Wang P, Ye XS, et al. Drug evaluatios using a novel microphysiometer based on cell-based biosensois [J]. Sens Actuatois B Chem,2001, 74: 2-11.
  • 2Hock B, Seifert M, Kramer K. Engineering receptors and antibodies for biosensors[J]. Biosens Bioelectron, 2002, 17: 239-249.
  • 3Pearce TC. Computational parallels between the biological olfactory pathway and its analogue "the electronic nose"[J]. Biosystems, 1997,41: 69-90.
  • 4Turner AP. Biochemistry: Biosensor-sense and sensitivity [J ]. Science,2000, 17: 1315-1317.
  • 5Rudolph AS, Reasor J. Cell and tissue based technologies for environmental detection and medical diagnostics[J]. Biosens Bioeleetron.2001, 16: 429-431.
  • 6Maher MP, Pine J, Wright J, et al. The neurochip: A new multielectrode device for stimulating and recording from cultured neurons[J].J Neurosic Methods, 1999, 87: 45-56.
  • 7Narusuye K, Kawai F, Miyachi E. Spike encoding of olfactory receptor cells[J]. Neurosci Res, 2003, 46: 407-413.
  • 8Gopel W. From electronic to bioelectronic offaction, or. From artificial "moses" to real noses[J]. Sens Actuators B Chem, 2000, 65: 70-72.
  • 9Gopel W. Chemical imaging: Concepts and visions for electronic and bioelectronic noses[J]. Sens Actuators B Chem, 1998, 52: 125-142.
  • 10Gross GW, Harsch A, Rhodades BK, et al. Odor, drug and toxin analysis with neuronal networks in vitro: Extracellular array recording of network responses[J]. Biosens Bioelectron, 1997, 12: 373-393.

共引文献1

同被引文献13

  • 1杨如乃,胡志忠,卢健.生物嗅觉神经系统模型的模拟与分析[J].生物医学工程研究,2006,25(3):131-136. 被引量:7
  • 2陈传平,陈琳,林云生,曾绍群.培养神经元网络对不同间隔电脉冲刺激的响应[J].航天医学与医学工程,2006,19(6):442-446. 被引量:4
  • 3叶学松,高波,张莹伟,王彬,王鹏,李炯熹.基于PCI和DSP结构的多通道神经信号采集系统的研制[J].仪器仪表学报,2007,28(2):198-202. 被引量:9
  • 4G Lament. A systems perspective on early olfactory coding [ J], Science, 1999,286(22) : 723-728.
  • 5S Lagier, A Carleton, P M Lledo. Interplay between local GABAergic intemeurons and relay neurons generates oscillations in the rat olfactory bulb [ J] .J Neurosci, 2004,24( 18): 4382 - 4392.
  • 6N E Schoppa, N N Urban. Dendritic processing within olfactory bulb circuits [ J]. Trends Neurosci,2003,26 (9) :501 - 506.
  • 7M Puopolo, O Belluzzi. Inhibitory synapses among intemeurons in the glomerular layer of rat and frog olfactory bulbs [ J ]. J Neurophysiol, 1998,80( 1 ) :344 - 349.
  • 8M Migliore, G M Shepherd. Dendritic action potentials connect distributed dendrodendritic microcircuits [ J ]. J Comput Neurosci,2008,24(2) :207 - 221.
  • 9A P Davison,et al.A reduced compartmental model of the mitral cell for use in network models of the olfactory bulb [ J]. Brain Research Bulletin,2000,51 (5) :393 - 399.
  • 10R. Bardoni, et al. Potassium currents in periglomendar cells of frog olfactory bulb in vitro [ J]. Neurosci Lett, 1996,210(2) : 95 - 98.

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部