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Effects of picrotoxin and strychnine on rabbit retinal ganglion cells: lateral interactions for cells with more complex receptive fields.

机译:微小毒素和士的宁对兔视网膜神经节细胞的影响:具有更复杂感受野的细胞的横向相互作用。

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摘要

1. The effects of picrotoxin and strychnine were tested on the receptive fields of direction sensitive cells, orientation sensitive cells, local edge detectors, uniformity detectors and large field units in the rabbit retina. 2. Picrotoxin eliminated the direction specificity and size specificity of 'on-off' and 'on' directionally sensitive cells for both black and white objects. Picrotoxin also made 'on' directionally sensitive cells responsive to faster velocities. 3. Picrotoxin eliminated the orientation specificity of orientation sensitive cells, and changed the bar-flank arrangement of the receptive field into a centre surround arrangement. Thus, the orientation specificity is due to inhibitory rather than excitatory mechanisms. 4. Picrotoxin altered the speed sensitivity of large field units so that they responded to slow speeds as well as fast ones, like centre surround Y cells. 5. Strychnine abolished the size specificity of local edge detectors and changed their speed specificity so that they responded to faster speeds. 6. Picrotoxin changed a uniformity detector into a sustained on centre cell. 7. Strychnine did not effect the direction specificity of directionally sensitive cells, the orientation specificity of orientation sensitive cells, or the speed specificity of large field units. Picrotoxin did not affect the size specificity of local edge detectors. 8. Picrotoxin and strychnine usually had opposing effects on the transient responses of these units to spots and annuli. In general picrotoxin prolonged and enhanced these responses at both on and off, and strychnine shortened them. 9. The effect of these drugs for every type of ganglion cell with complex receptive field properties was to make the receptive field more simple. The orientation selective cells, large field cells, 'on' direction selective cells and uniformity detectors seem to be centre surround cells with special properties that are abolished by these drugs. The 'on-off' direction selective cells and local edge detectors still on-off receptive fields, but in each case one of the drugs abolished the feature that was the basis for the cell's name.
机译:1.对兔视网膜中方向敏感细胞,方向敏感细胞,局部边缘检测器,均匀性检测器和大视野单位的感受野测试了微毒素和士的宁的作用。 2.微毒素消除了黑白物体“开-关”和“开”方向敏感细胞的方向特异性和大小特异性。微小毒素也使定向敏感细胞“上”于对更快速度的反应。 3.微毒素消除了定向敏感细胞的定向特异性,并将感受野的条状排列改变为中心环绕排列。因此,定向特异性是由于抑制而不是兴奋机制。 4.微毒素改变了大型场单元的速度敏感性,因此它们对慢速和快速速度都做出了反应,例如中央环绕Y细胞。 5. Strychnine取消了局部边缘检测器的尺寸特异性,并更改了其速度特异性,以便它们对更快的速度做出响应。 6.微毒素将均匀性检测器改变为中心细胞持续存在。 7.士的宁不影响方向敏感细胞的方向特异性,方向敏感细胞的方向特异性或大视野单位的速度特异性。微毒素不影响局部边缘检测器的大小特异性。 8.微小毒素和士的宁通常对这些单位对斑点和环的瞬时反应有相反的影响。通常,次甲基毒素在开和关时均延长并增强了这些反应,而士的宁缩短了它们的反应。 9.这些药物对具有复杂感受野特性的每种神经节细胞的作用是使感受野更简单。定向选择性细胞,大视野细胞,“在”方向选择性细胞和均匀性检测器似乎是这些药物废除了的具有特殊性质的中心环绕细胞。 “开-关”方向选择性细胞和局部边缘检测器仍在开-关接受场,但是在每种情况下,其中一种药物都废除了作为细胞名称基础的特征。

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