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猫前腹侧耳蜗核神经元放电模式中稳态元音/e/的表征。

The representations of the steady-state vowel sound /e/ in the discharge patterns of cat anteroventral cochlear nucleus neurons.

作者信息

Blackburn C C, Sachs M B

机构信息

Center for Hearing Sciences, Johns Hopkins University, Baltimore, Maryland 21205.

出版信息

J Neurophysiol. 1990 May;63(5):1191-212. doi: 10.1152/jn.1990.63.5.1191.

DOI:10.1152/jn.1990.63.5.1191
PMID:2358869
Abstract
  1. We have recorded the responses of neurons in the anteroventral cochlear nucleus (AVCN) of barbiturate-anesthetized cats to the synthetic, steady-state-vowel sound /e/, presented over a range of stimulus intensities. 2. The responses of (putative) spherical bushy cells [primary-like (Pri) units] to the vowel resemble those of auditory-nerve fibers (ANFs) in terms of both rate and temporal encoding at low and moderate stimulus levels. It was not possible to study the responses of most Pri units at the highest stimulus level because of the large neurophonic component present in recordings from most primarylike units at higher stimulus levels. 3. The responses of many (putative) globular bushy cells [primarylike with notch (PN) units] to the vowel resemble those of ANFs; however, there appears to be greater heterogeneity in the responses of units in the PN population than in the Pri population in terms of both temporal and rate encoding. 4. Populations of stellate cells (chopper units) have degraded representations of the temporal information in ANF population discharge patterns in response to the vowel; this is consistent with the responses of these units to pure tones. Both regular (ChS) and irregular (ChT) chopper subpopulations, however, maintain better rate-place representations of the vowel spectrum than does the population of ANFs as a whole. The rate-place representations of the vowel spectrum by both chopper populations closely resemble those of low and medium spontaneous rate ANFs at most stimulus levels. 5. The data presented in this paper suggest that a functional partition of the AVCN chopper population could yield two distinct rate representations in response to a complex stimulus: one that is graded with stimulus level (over a 30 to 40 dB range) and that, even at rate saturation, maintains a "low contrast" stimulus representation; and a second that maintains a robust, "high contrast" stimulus representation at all levels but that confers less information about stimulus level.
摘要
  1. 我们记录了巴比妥麻醉猫的前腹侧耳蜗核(AVCN)中神经元对合成的稳态元音/e/在一系列刺激强度下的反应。2. (假定的)球形多毛细胞[初级样(Pri)单元]对元音的反应在低和中等刺激水平下的速率和时间编码方面类似于听神经纤维(ANF)。由于在较高刺激水平下大多数初级样单元的记录中存在较大的神经音成分,因此无法在最高刺激水平下研究大多数Pri单元的反应。3. 许多(假定的)球状多毛细胞[带凹口的初级样(PN)单元]对元音的反应类似于ANF;然而,就时间和速率编码而言,PN群体中单元的反应似乎比Pri群体中的单元反应具有更大的异质性。4. 星状细胞群体(斩波器单元)对元音的反应中,ANF群体放电模式中的时间信息表征有所退化;这与这些单元对纯音的反应一致。然而,规则(ChS)和不规则(ChT)斩波器亚群体对元音频谱的速率-位置表征比整个ANF群体更好。在大多数刺激水平下,两个斩波器群体对元音频谱的速率-位置表征与低和中等自发放电率的ANF非常相似。5. 本文呈现的数据表明,AVCN斩波器群体的功能划分可能会在对复杂刺激的反应中产生两种不同的速率表征:一种随刺激水平分级(在30至40分贝范围内),即使在速率饱和时也保持“低对比度”刺激表征;另一种在所有水平上都保持强大的“高对比度”刺激表征,但关于刺激水平的信息较少。

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