Rhoades R W, Chalupa L M
J Comp Neurol. 1978 Aug 1;180(3):617-34. doi: 10.1002/cne.901800312.
Approximately 31% of the cells recorded in the hamster's superior colliculus could be activated by stimulation of the ipsilateral primary visual cortex. While cortically activated cells were encountered in all laminae of the colliculus where visual cells were isolated, the highest probability of driving visual cells was observed in the deeper laminae, that is, those ventral to the stratum opticum. Response latency, jitter (latency variability), latency shifts as a function of shock intensity, thresholds, and spike numbers did not vary as a function of depth in the colliculus. There was a clear correspondence between the visual fields of the best cortical stimulus points and the receptive fields of cortically activated cells recorded in the superficial laminae of the colliculus. However, there was considerably less retinotopic fidelity for the cortical areas from which cells isolated in the deeper laminae could be driven. This suggests a greater degree of convergence from relatively widespread cortical regions upon visual cells of the deeper laminae. The visal organization) of the cortically activated cells did not differ appreciably from the overall sample of visual cells recorded in the colliculus. Only 3 of the 159 cells tested were driven by stimulation of the contralateral visual cortex and two of these were responsive only at very long latencies.
在仓鼠上丘记录到的细胞中,约31%可被同侧初级视觉皮层的刺激激活。虽然在分离出视觉细胞的上丘所有层中都发现了皮层激活的细胞,但在较深层,即视神经层腹侧的那些层中,驱动视觉细胞的概率最高。反应潜伏期、抖动(潜伏期变异性)、潜伏期随电击强度的变化、阈值和峰值数量并不随上丘深度而变化。在丘表层记录到的皮层激活细胞的最佳皮层刺激点视野与感受野之间存在明显对应关系。然而,对于能驱动深层分离细胞的皮层区域,视网膜拓扑保真度要低得多。这表明相对广泛的皮层区域对深层视觉细胞的汇聚程度更高。皮层激活细胞的视觉组织与在上丘记录的视觉细胞总体样本没有明显差异。在测试的159个细胞中,只有3个由对侧视觉皮层的刺激驱动,其中两个仅在很长的潜伏期才有反应。