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金鱼视网膜中颜色编码的神经节细胞:通过新刺激扩展其感受野

Colour-coded ganglion cells in the goldfish retina: extension of their receptive fields by means of new stimuli.

作者信息

Daw N W

出版信息

J Physiol. 1968 Aug;197(3):567-92. doi: 10.1113/jphysiol.1968.sp008575.

Abstract
  1. Receptive fields of colour-coded ganglion cells of the goldfish retina were investigated.2. Only a few cells (5%, Type P) were found to be as simple as those described by Wagner, MacNichol & Wolbarsht (1960, 1963), with an ;on' response to red light in the centre, and an ;off' response to green light over a rather wider area, or vice versa.3. Most cells (49%, Type O) also gave a peripheral response with an ;on' response to green light, and an ;off' response to red light in the periphery, as well as an ;on' response to red light and an ;off' response to green light in the centre (or vice versa).4. When a small spot of light was used to stimulate the periphery of a Type O cell, the peripheral response usually was not obtained. The organization of the periphery is such that a stimulus of large area and low intensity (annulus) is much more effective than a stimulus having equal energy with small area and high intensity (spot). If only small spots are used, the Type O cell is indistinguishable from the Type P cell.5. Spectral sensitivity measurements show that one central and one peripheral process are fed primarily by red-absorbing cones, and the other central and the other peripheral process by green-absorbing cones or rods.6. The diameter of the receptive field as a whole is very large, being 5 mm or more on the retina.7. When red spots in green surrounds, or red/green boundaries are used as stimuli, the response can be predicted by summing the responses to the components of the stimulus.8. This type of receptive field organization is appropriate to mediate simultaneous colour contrast. The ;opponent colour' organization previously reported is appropriate for successive colour contrast, but not for simultaneous colour contrast.9. The component of the response coming from the green-absorbing cones was masked or hidden by the component of the response coming from the red-absorbing cones in 14% of the units (Type Q units). The component from the green-absorbing cones was revealed by using a high intensity of stimulation, or by observing the response after bleaching pigment with an intense red light.
摘要
  1. 对金鱼视网膜中颜色编码神经节细胞的感受野进行了研究。

  2. 仅发现少数细胞(5%,P型)与瓦格纳、麦克尼科尔和沃尔巴什特(1960年、1963年)所描述的细胞一样简单,其中心对红光有“开”反应,在相当大的区域对绿光有“关”反应,反之亦然。

  3. 大多数细胞(49%,O型)在周边也有反应,周边对绿光有“开”反应,对红光有“关”反应,中心对红光有“开”反应,对绿光有“关”反应(反之亦然)。

  4. 当用一个小光点刺激O型细胞的周边时,通常得不到周边反应。周边的组织情况是,大面积低强度的刺激(环形)比具有相同能量的小面积高强度刺激(光点)更有效。如果仅使用小光点,O型细胞与P型细胞无法区分。

  5. 光谱敏感性测量表明,一个中心和一个周边过程主要由吸收红光的视锥细胞提供输入,另一个中心和另一个周边过程由吸收绿光的视锥细胞或视杆细胞提供输入。

  6. 整个感受野的直径非常大,在视网膜上为5毫米或更大。

  7. 当用绿色背景中的红色光点或红/绿边界作为刺激时,通过对刺激成分的反应进行求和可以预测反应。

  8. 这种类型的感受野组织适合于介导同时性颜色对比。先前报道的“对立颜色”组织适合于相继性颜色对比,但不适合于同时性颜色对比。

  9. 在14%的单位(Q型单位)中,来自吸收绿光视锥细胞的反应成分被来自吸收红光视锥细胞的反应成分掩盖或隐藏。通过使用高强度刺激,或在用强光漂白色素后观察反应,可以揭示来自吸收绿光视锥细胞的成分。

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