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Binaurality and azimuth tuning of neurons in the auditory cortex of the big brown bat 被引量:1
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作者 SHEN Junxian & CHEN QicaiCenter for Brain and Cognitive Science, Laboratory of Visual Information Processing, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China Department of Biology, Central China Normal University, Wuhan 430070, 《Chinese Science Bulletin》 SCIE EI CAS 2002年第12期1024-1027,共4页
By using a combined closed and free-field stimulation system, binaurality and azimuth tuning of the neurons in the auditory cortex of the big brown bat, Epte-sicus fuscus, were studied. A variety of azimuth-tuning fun... By using a combined closed and free-field stimulation system, binaurality and azimuth tuning of the neurons in the auditory cortex of the big brown bat, Epte-sicus fuscus, were studied. A variety of azimuth-tuning functions were demonstrated for the binaural neurons. The large majority of EE (contralateral and ipsilateral excitatory) neurons exhibited azimuth selectivity with the best azimuths (BA) at contralateral 30°-40°, some at ipsilateral 20°-40° and preferred azimuth ranges (PAR, response amplitude 】75% of maximum) between 8° and 40°. Sound source azimuths strongly modulate spike counts with a mean modulation depth of 83.8% for EE neurons. EI (contralateral excitatory and ipsilateral inhibitory) neurons have simple azimuth tuning with BA located at contralateral 20°-40° and a broad PAR ranged from 30° to 55°. The present results suggest that azimuth-tuning characteristics of binaural neurons in the auditory cortex of the bat are of significance for acoustic behaviour. 展开更多
关键词 BAT AUDITORY CORTEX BINAURAL NEURONS azimuth tuning.
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小鼠下丘听觉神经元的方位角灵敏度
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作者 黄小英 邱强 沈钧贤 《生物物理学报》 CAS CSCD 北大核心 2002年第4期404-408,共5页
声源定位是听觉系统的主要功能之一。下丘作为听觉中脑的重要组成部分,在声源定位的过程中起到非常重要的作用。应用胞外记录方法研究小鼠下丘神经元对自由声场内不同方位声刺激的调谐特性。实验记录了100个下丘神经元,根据神经脉冲发... 声源定位是听觉系统的主要功能之一。下丘作为听觉中脑的重要组成部分,在声源定位的过程中起到非常重要的作用。应用胞外记录方法研究小鼠下丘神经元对自由声场内不同方位声刺激的调谐特性。实验记录了100个下丘神经元,根据神经脉冲发放数与声源方位角关系曲线、最佳方位角(best azimuth, BA)位置和优势方位角范围(preferred azimuth range, PAR),可将其分为4类:对侧极大型神经元占79%,PAR为52.3°;双峰型神经元占14% ,PAR为68.0°;全向型神经元占5%,PAR为169.6°;同侧极大型神经元占2%,PAR为66.5°。实验结果说明,小鼠下丘神经元对方位角有很好的表达,对声源方位有选择性,并表明声音的方位信息在下丘进行了加工整合。本文还就下丘神经元方位编码的机制进行了探讨。 展开更多
关键词 下丘 方位角调谐 方位编码 小鼠
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