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白化大鼠听觉皮层的组织:双耳反应特性

Organization of auditory cortex in the albino rat: binaural response properties.

作者信息

Kelly J B, Sally S L

机构信息

Department of Psychology, Carleton University, Ottawa, Ontario, Canada.

出版信息

J Neurophysiol. 1988 Jun;59(6):1756-69. doi: 10.1152/jn.1988.59.6.1756.

Abstract
  1. The binaural response properties of neurons in the auditory cortex of the albino rat were examined using microelectrode mapping techniques. Characteristic frequencies, binaural response classes, and interaural intensity differences for binaural interaction were determined for multiple electrode penetrations across the cortical surface. The location of electrode penetrations was determined by reference to the cortical vascular pattern in individual animals. 2. When examined over a wide range of interaural intensities binaural responses could be classified as one of the following types: summation, i.e., excited by stimulation of either ear alone and facilitated by stimulation of both ears together (35.3%); suppression, i.e., excited by contralateral stimulation, unaffected by ipsilateral stimulation alone, but inhibited under binaural stimulus conditions (42.2%); mixed, i.e., facilitated by binaural stimulation at near threshold levels, but strongly inhibited by increased sound pressure levels in the ipsilateral ear (18.5%); or other, i.e., responses that could not be classified as any other type (4%). 3. Neurons of the summation and suppression class often exhibited binaural interaction when the intensities at both ears were approximately equal. The modal interaural intensity difference for both response types was between 0 and +5 dB. Neurons of the mixed interaction class were facilitate at near equal dichotic intensity but suppressed when the intensity in the ipsilateral ear was increased. The modal value was between 0 and +5 dB for summation and +20 dB for suppression. 4. Summation, suppression, and mixed binaural response types were found over a wide range of sound frequencies from 1 to 40 kHz. There was some tendency for summation responses to prevail at lower frequencies and suppression responses to prevail at higher frequencies but the differences were not large. Generally, responses from each of the three binaural classes were well represented over the rat's hearing range. 5. Cells of the same binaural response type were grouped together to form aggregates of summation, suppression, or mixed interaction patterns. Cortical areas with similar binaural response properties appeared in some cases to extend across isofrequency contours.
摘要
  1. 运用微电极测绘技术研究了白化大鼠听觉皮层神经元的双耳反应特性。针对跨皮层表面的多次电极插入,测定了特征频率、双耳反应类别以及双耳相互作用的双耳强度差。电极插入的位置通过参考个体动物的皮层血管模式来确定。2. 在广泛的双耳强度范围内进行检测时,双耳反应可分为以下几种类型:总和型,即仅刺激任一耳时兴奋,双耳同时刺激时增强(35.3%);抑制型,即对侧刺激时兴奋,单独同侧刺激时无影响,但在双耳刺激条件下受到抑制(42.2%);混合型,即接近阈值水平的双耳刺激时增强,但同侧耳声压水平增加时强烈抑制(18.5%);或其他型,即无法归类为其他任何类型的反应(4%)。3. 当双耳强度大致相等时,总和型和抑制型神经元常表现出双耳相互作用。两种反应类型的典型双耳强度差在0至+5分贝之间。混合相互作用型神经元在双耳强度接近相等时增强,但同侧耳强度增加时受到抑制。总和型的典型值在0至+5分贝之间,抑制型在+20分贝。4. 在1至40千赫的广泛声频范围内发现了总和型、抑制型和混合型双耳反应类型。在较低频率下总和反应有占优势的趋势,在较高频率下抑制反应有占优势的趋势,但差异不大。一般来说,在大鼠的听力范围内,三种双耳类别中的每一种反应都有很好的体现。5. 相同双耳反应类型的细胞聚集在一起,形成总和型、抑制型或混合相互作用模式的聚集体。在某些情况下,具有相似双耳反应特性的皮层区域似乎延伸穿过等频率轮廓。

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