Withington D J, Mark R F, Thornton S K, Liu G B, Hill K G
Department of Physiology, University of Leeds, UK.
Exp Brain Res. 1995;105(2):233-40. doi: 10.1007/BF00240959.
Auditory responses to free-field broad band stimulation from different directions were recorded from clusters of neurones in the superior colliculus (SC) of the anaesthetized tammar wallaby. The auditory responses were found approximately 2 mm beneath the first recording of visually evoked responses in the superficial layers, the vast majority being solely auditory in nature; only one recording responded to both auditory and visual stimulation. Responses to suprathreshold intensities displayed sharp spatial tuning to sound in the contralateral hemifield. Those from the rostral pole of the SC disclosed a preference for auditory stimuli in the azimuthal anterior field, whereas those in the caudal SC preferentially responded to sounds in the posterior field. A continuum of directionally tuned responses was seen along the rostrocaudal axis of the SC so that the entire azimuthal contralateral auditory hemifield was represented in the SC. Furthermore, tight spatial alignment was evident between the best position of the visual responses in the superficial layers in azimuth and the peak angle of the auditory response in the deeper layers.
在麻醉的帚尾袋貂的上丘(SC)中,从神经元簇记录了对来自不同方向的自由场宽带刺激的听觉反应。听觉反应出现在表层视觉诱发反应首次记录下方约2毫米处,绝大多数反应本质上仅是听觉的;只有一个记录对听觉和视觉刺激都有反应。对阈上强度的反应显示出对侧半视野声音的尖锐空间调谐。来自SC吻端极的反应表明对方位前区的听觉刺激有偏好,而尾侧SC的反应则优先对后区的声音做出反应。沿着SC的吻尾轴可以看到一系列方向调谐反应,因此整个对侧方位听觉半视野都在SC中得到表征。此外,表层视觉反应在方位上的最佳位置与深层听觉反应的峰值角度之间存在明显的紧密空间对齐。