Heggelund P
Exp Brain Res. 1981;42(1):89-98. doi: 10.1007/BF00235733.
The receptive field organization of simple cells was studied by analyzing interaction effects between two stationary flashing light stimuli. One stimulus was positioned in the most responsive part of the receptive field to produce activity against which the effects of the other stimulus in various positions of the visual field could be determined. The receptive field was subdivided into an elongated center and elongated antagonistic flanks. The effects on the flanks were always considerably stronger on one side. Powerful flank suppression could be elicited within a region which usually was only slightly wider than the receptive field center. The suppression was just as stimulus specific as the activation of the center and occurred only by light ON or OFF. The cells were classified into ON-dominant and OFF-dominant depending on the kind of response found in the center. In ON-dominant cells the strong flank suppression occurred only by light ON, and light OFF produced enhancement. Correspondingly, the strong flank suppression occurred only by light OFF in OFF-dominant cells. This is consistent with the interpretation that simple cells have excitatory and inhibitory input from the same type of cells in the lateral geniculate nucleus (LGN), i.e., only from ON-center or OFF-center cells. The small size of the area where strong flank suppression occurred shows that inhibition comes fom a few LGN cells rather than from a large pool of cells. A model for simple cell receptive fields presuming overlapping but acentric excitatory and inhibitory fields with input to both fields frm either ON- or OFF-center LGN cells was tested by computer simulation and shown to fit the experimental data.
通过分析两个静止闪烁光刺激之间的相互作用效应,研究了简单细胞的感受野组织。将一个刺激置于感受野最敏感的部分以产生活动,据此可确定视野中其他不同位置的刺激所产生的效应。感受野被细分为一个细长的中心区域和细长的拮抗侧翼区域。侧翼区域一侧的效应总是明显更强。在一个通常仅比感受野中心略宽的区域内可引发强大的侧翼抑制。这种抑制与中心区域的激活一样具有刺激特异性,并且仅在光开启或关闭时发生。根据在中心区域发现的反应类型,这些细胞被分为开型主导和关型主导。在开型主导细胞中,强大的侧翼抑制仅在光开启时发生,而光关闭则产生增强效应。相应地,在关型主导细胞中,强大的侧翼抑制仅在光关闭时发生。这与以下解释一致,即简单细胞从外侧膝状体核(LGN)中同一类型的细胞接收兴奋性和抑制性输入,即仅来自开中心或关中心细胞。发生强大侧翼抑制的区域面积较小,这表明抑制来自少数LGN细胞而非大量细胞。通过计算机模拟测试了一个简单细胞感受野模型,该模型假定兴奋性和抑制性场重叠但无中心,且来自开中心或关中心LGN细胞的输入同时作用于这两个场,结果表明该模型符合实验数据。