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猫上丘深层神经元的听觉反应特性

Auditory response properties of neurons in deep layers of cat superior colliculus.

作者信息

Wise L Z, Irvine D R

出版信息

J Neurophysiol. 1983 Mar;49(3):674-85. doi: 10.1152/jn.1983.49.3.674.

Abstract
  1. The auditory responses of 207 single neurons in the intermediate and deep layers of the superior colliculus (SC) of barbiturate -or chloralose-anesthetized cats were recorded extracellularly. Sealed stimulating systems incorporating calibrated probe microphone assemblies were employed to present tone- and noise-burst stimuli. 2. All acoustically activated neurons responded with onset responses to noise bursts. Of those neurons also tested with tonal stimuli, approximately 30% were unresponsive over the frequency range tested (0.1-40 kHz), while the others had higher thresholds to tones than to noise. 3. Details of frequency responsiveness were obtained for 55 neurons; 21 were broadly tuned, while 34 were sharply tuned with clearly defined characteristic frequencies (CFs). All sharply tuned neurons had CFs greater than or equal to 10 kHz. 4. The majority of neurons (81%) responded with latencies in the range 8-20 ms; only 11% of neurons had latencies greater than 30 ms. 5. Binaural response properties were examined for 165 neurons. The great majority (79%) received monaural excitatory input only from the contralateral ear (EO). However, most EO cells were binaurally influenced, the contralateral response being either inhibited (EO/I; 96 of 131 units) or facilitated (EO/F; 33 of 131 units) by simultaneous ipsilateral stimulation. Small subgroups were monaurally excited by either ear (EE cells; 8%) or were unresponsive monaurally but responded strongly to binaural stimulation (OO/F cells; 7%). 6. EO/I, EO/F, and OO/F neurons showed characteristic forms of sensitivity to interaural intensity differences (IIDs). The IID functions of EO/I neurons would be expected to produce large contralateral spatial receptive fields with clearly defined medial borders, such as have been described in studies of deep SC neurons employing free-field stimuli. 7. Preliminary evidence suggests a possible topographic organization of IID sensitivity in deep SC, such that the steeply sloping portion of the function (corresponding to the medial edge of the receptive field) is shifted laterally for EO/I neurons located more caudally in the nucleus. 8. The auditory properties of deep SC neurons are compared with previous reports and implications for the organization of auditory input are considered. The binaural properties and auditory spatial fields of deep SC neurons suggest that any representation of auditory space in this structure is unlikely to be based on restricted spatial fields.
摘要
  1. 对巴比妥或氯醛糖麻醉的猫的上丘(SC)中层和深层的207个单神经元的听觉反应进行了细胞外记录。采用了装有校准探针麦克风组件的密封刺激系统来呈现纯音和噪声脉冲刺激。2. 所有听觉激活的神经元对噪声脉冲均以起始反应做出回应。在那些也用纯音刺激进行测试的神经元中,约30%在测试频率范围(0.1 - 40千赫)内无反应,而其他神经元对纯音的阈值高于对噪声的阈值。3. 获得了55个神经元的频率反应细节;21个为宽调谐,而34个为锐调谐,具有明确界定的特征频率(CFs)。所有锐调谐神经元的CFs大于或等于10千赫。4. 大多数神经元(81%)的反应潜伏期在8 - 20毫秒范围内;只有11%的神经元潜伏期大于30毫秒。5. 对165个神经元的双耳反应特性进行了检查。绝大多数(79%)仅从对侧耳(EO)接受单耳兴奋性输入。然而,大多数EO细胞受到双耳影响,对侧反应在同侧同时刺激时被抑制(EO/I;131个单位中的96个)或被易化(EO/F;131个单位中的33个)。小亚组由任一耳单耳兴奋(EE细胞;8%)或单耳无反应但对双耳刺激有强烈反应(OO/F细胞;7%)。6. EO/I、EO/F和OO/F神经元对耳间强度差(IIDs)表现出特征性的敏感形式。预计EO/I神经元的IID函数会产生具有明确界定内侧边界的大对侧空间感受野,如在使用自由场刺激的深层SC神经元研究中所描述的那样。7. 初步证据表明深层SC中IID敏感性可能存在拓扑组织,使得对于位于核中更靠尾侧的EO/I神经元,函数的陡坡部分(对应于感受野的内侧边缘)向外侧移动。8. 将深层SC神经元的听觉特性与先前的报告进行了比较,并考虑了对听觉输入组织的影响。深层SC神经元的双耳特性和听觉空间感受野表明,该结构中听觉空间的任何表征不太可能基于受限的空间感受野。

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