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猫初级听觉皮层中声压级的双耳处理:基于绝对声压级而非双耳声压级差别的表征证据。

Binaural processing of sound pressure level in cat primary auditory cortex: evidence for a representation based on absolute levels rather than interaural level differences.

作者信息

Semple M N, Kitzes L M

机构信息

Department of Anatomy and Neurobiology, University of California, Irvine 92717.

出版信息

J Neurophysiol. 1993 Feb;69(2):449-61. doi: 10.1152/jn.1993.69.2.449.

Abstract
  1. Single-neuron responses were recorded in high-frequency regions of primary auditory cortex (AI) of anesthetized cats. Best-frequency tone pips were presented to each ear independently via sealed stimulus delivery systems, and the sound pressure level (SPL) at each ear was independently manipulated. Each neuron was studied with many dichotic combinations of SPL, chosen to incorporate a broad range of the two synthetic interaural level variables, interaural level difference (ILD) and average binaural level (ABL). This paper illustrates the common forms of binaural SPL selectivity observed in a sample of 204 single neurons located in AI. 2. Most neurons (> 90%) were jointly influenced by ILD and ABL. A small proportion of bilaterally excitable (EE) neurons responded to ABL rather independently of ILD. Only one neuron was determined to respond to ILD independently of ABL. 3. Nonmonotonic selectivity for one or both of the binaural level cues was evident in > 60% of our sample. Within the most effective range of ILD values, response strength was usually related nonmonotonically to related both to ILD and ABL. We have described units exhibiting this kind of dual nonmonotonic selectivity for the two binaural variables as being influenced by a Two-Way Intensity Network (TWIN). 4. Each of the response forms identified in an earlier study of the gerbil inferior colliculus were found in this study of cat auditory cortex. However the classes were evident in markedly different proportions. In particular, TWIN responses alone accounted for 36.2% of the sample, nearly four times the proportion found in the inferior colliculus in a previous study. 5. Units with similar binaural responses do not necessarily have similar monaural properties. For example, the typically nonmonotonic relation between response strength and ABL was often observed in the absence of a monaurally demonstrable nonmonotonicity. There is no simple relation between a neuron's classification according to the sign of monaural influence and its response to ILD and ABL. In particular, EE neurons exhibited remarkably diverse binaural properties. 6. Since responses of nearly all AI neurons are influenced jointly by ABL and ILD, we contend that single neurons in primary auditory cortex are not specifically tuned to either cue. ILD and ABL are mathematical expressions relating the SPLs at the two ears to each other (as the difference and average, respectively) and any such combination is expressed most simply as a particular combination of SPL at each ear.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在麻醉猫的初级听觉皮层(AI)高频区域记录单个神经元的反应。通过密封的刺激传递系统分别向每只耳朵呈现最佳频率音脉冲,并且独立控制每只耳朵处的声压级(SPL)。对每个神经元进行了许多SPL的双耳组合研究,这些组合被选择以纳入两个合成耳间水平变量的广泛范围,即耳间水平差(ILD)和平均双耳水平(ABL)。本文阐述了在位于AI的204个单个神经元样本中观察到的双耳SPL选择性的常见形式。2. 大多数神经元(>90%)受到ILD和ABL的共同影响。一小部分双侧兴奋性(EE)神经元对ABL有反应,而与ILD相对独立。仅确定一个神经元对ILD有反应,而与ABL无关。3. 在我们的样本中,超过60%的神经元对一种或两种双耳水平线索表现出非单调选择性。在ILD值的最有效范围内,反应强度通常与ILD和ABL均呈非单调相关。我们将对这两个双耳变量表现出这种双重非单调选择性的单元描述为受双向强度网络(TWIN)影响。4. 在对沙鼠下丘的早期研究中确定的每种反应形式在对猫听觉皮层的这项研究中都能找到。然而,这些类别在比例上有明显差异。特别是,仅TWIN反应就占样本的36.2%,几乎是先前研究中下丘中发现比例的四倍。5. 具有相似双耳反应的单元不一定具有相似的单耳特性。例如,在没有单耳可证明的非单调性的情况下,经常观察到反应强度与ABL之间典型的非单调关系。根据单耳影响的符号对神经元进行分类与其对ILD和ABL的反应之间没有简单的关系。特别是,EE神经元表现出非常多样的双耳特性。6. 由于几乎所有AI神经元的反应都受到ABL和ILD的共同影响,我们认为初级听觉皮层中的单个神经元并非专门针对任何一个线索进行调谐。ILD和ABL是将两只耳朵处的SPL相互关联的数学表达式(分别作为差值和平均值),任何这样的组合都最简洁地表示为每只耳朵处SPL的特定组合。(摘要截断于400字)

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