Moore D R, Hutchings M E, Addison P D, Semple M N, Aitkin L M
Hear Res. 1984 Feb;13(2):175-88. doi: 10.1016/0378-5955(84)90107-2.
Single units in the central nucleus of the inferior colliculus (ICC) of barbiturate-anaesthetized cats were studied using pure-tone, best-frequency stimulation presented in the free field. At low stimulus intensities almost all neurones responded most strongly to stimuli positioned along the acoustical axis of the pinna contralateral to the recording electrode and there was little or no response to stimuli positioned in the ipsilateral hemifield. Four major classes of spatial response were distinguished when tones of moderate to high intensity were used. The simplest response (24% of the sample) to increasing intensity consisted of a monotonic increase in discharge level at all effective speaker positions and an expansion of the area of space from which a stimulus influenced the response (receptive field). A second class (21%) of units had a nonmonotonic increase in discharge level and an expanding receptive field with increasing intensity. Neither of these classes showed evidence of influence from the ipsilateral ear. The third class (26%) developed, at higher intensities, a second excitatory response region in the ipsilateral hemifield. The fourth class (20%) had receptive fields with fixed medial borders, irrespective of intensity. The third and fourth classes of units were thought to be binaurally influenced and to be sensitive to interaural phase and intensity differences, respectively.
利用自由场中呈现的纯音、最佳频率刺激,对巴比妥麻醉猫的下丘中央核(ICC)中的单个神经元进行了研究。在低刺激强度下,几乎所有神经元对位于与记录电极对侧耳廓声轴上的刺激反应最为强烈,而对同侧半视野中的刺激几乎没有反应。当使用中高强度纯音时,区分出了四类主要的空间反应。对强度增加的最简单反应(样本的24%)包括在所有有效扬声器位置上放电水平的单调增加,以及刺激影响反应(感受野)的空间区域的扩大。第二类(21%)神经元随着强度增加,放电水平呈非单调增加,感受野扩大。这两类都没有显示出来自同侧耳影响的证据。第三类(26%)在较高强度时,同侧半视野中出现第二个兴奋性反应区域。第四类(20%)的感受野具有固定的内侧边界,与强度无关。第三类和第四类神经元被认为分别受到双耳影响,且分别对双耳相位和强度差异敏感。