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猫下丘中的周期性编码。II. 拓扑组织。

Periodicity coding in the inferior colliculus of the cat. II. Topographical organization.

作者信息

Schreiner C E, Langner G

机构信息

Department of Otolaryngology, University of California, San Francisco 94143-0526.

出版信息

J Neurophysiol. 1988 Dec;60(6):1823-40. doi: 10.1152/jn.1988.60.6.1823.

Abstract
  1. The topographical distributions of single-unit and multiple-unit responses to amplitude-modulated tones--and to other relevant parameters of simple tonal stimuli--were defined across the main frequency representational gradient and within narrow frequency ranges represented in "frequency band laminae" in the principal midbrain auditory nucleus, the central nucleus of the inferior colliculus (ICC), in adult, barbiturate-anesthetized cats. 2. Responses to amplitude-modulated tones with the carrier set at the characteristic frequency (CF) of recorded neurons were obtained at many ICC locations in each experiment. The best modulation frequency (BMF) of neurons was defined at each site as that modulation frequency producing the highest neural discharge rate. Encountered BMFs ranged from approximately 10 to 1,000 Hz. A significant range of BMFs were recorded for neurons with any given characteristic frequency. BMF ranges varied as a systematic function of CF and of ICC recording depth. 3. Recorded BMFs were distributed topographically within functionally defined ICC frequency band laminae. Highest BMFs were found clustered in an ICC sector roughly between the middle and lateral third of its frequency band laminae. Progressively lower BMFs were recorded with increasing distance across the laminae in any direction away from the highest-BMF cluster. That is, "iso-BMF contours" were arrayed concentrically around the highest-BMF region. 4. Within frequency band laminae centered at approximately 3 and 12 kHz, quality factors (Q10 dBS) of frequency tuning curves were found to be between 0.8 and 8. Q10 dB values were distributed topographically within given frequency band laminae. Responses with narrow tuning curves (high Q10 dB values) were clustered in the middle third of the mediolateral extent of laminae; sharpness of tuning declined systematically away from this focus of highest Q10 dB values. The center of this distribution did not coincide with the center of the BMF distribution within the same lamina. 5. For neurons at greater than 90% of the ICC loci studied in these experiments, onset latencies to CF tones defined approximately 60 dB above response threshold fell within a range between 5 and 18 ms. Across a given frequency band lamina, onset latencies varied systematically, with longest response latencies recorded medially, and progressively shorter latencies recorded progressively more laterally. 6. Binaural interaction types were systematically distributed within frequency-band laminae. A cluster of excitatory-excitatory (EE) was seen, covering approximately one-third of the mapped area.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在成年巴比妥麻醉猫的中脑主要听觉核团——下丘中央核(ICC)中,确定了单单位和多单位对调幅音以及简单音调刺激的其他相关参数的反应在主要频率表征梯度上以及在“频带薄片”所代表的狭窄频率范围内的地形分布。2. 在每个实验的许多ICC位置获得了载波设置为记录神经元特征频率(CF)的调幅音的反应。每个位点的神经元最佳调制频率(BMF)定义为产生最高神经放电率的调制频率。遇到的BMF范围约为10至1000赫兹。对于具有任何给定特征频率的神经元,记录到了显著范围的BMF。BMF范围随CF和ICC记录深度的系统函数而变化。3. 记录的BMF在功能定义的ICC频带薄片内进行地形分布。最高的BMF聚集在ICC频带薄片中大致中间和外侧三分之一之间的一个区域。在远离最高BMF簇的任何方向上,随着穿过薄片的距离增加,记录到的BMF逐渐降低。也就是说,“等BMF轮廓”围绕最高BMF区域呈同心排列。4. 在以约3千赫和12千赫为中心的频带薄片内,频率调谐曲线的品质因数(Q10 dBS)在0.8至8之间。Q10 dB值在给定频带薄片内进行地形分布。调谐曲线窄(高Q10 dB值)的反应聚集在薄片中外侧范围的中间三分之一处;调谐锐度从这个最高Q10 dB值的焦点处系统地下降。这种分布的中心与同一薄片内BMF分布的中心不一致。5. 在这些实验中研究的ICC位点的90%以上的神经元中,对定义为比反应阈值高约60分贝的CF音的起始潜伏期在5至18毫秒之间。在给定的频带薄片内,起始潜伏期系统地变化,在内侧记录到最长的反应潜伏期,在外侧逐渐记录到越来越短的潜伏期。6. 双耳相互作用类型在频带薄片内系统地分布。观察到一组兴奋性 - 兴奋性(EE),覆盖了大约三分之一的映射区域。(摘要截断于400字)

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