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海龟视网膜中视锥细胞的感受野。

Receptive fields of cones in the retina of the turtle.

作者信息

Baylor D A, Fuortes M G, O'Bryan P M

出版信息

J Physiol. 1971 Apr;214(2):265-94. doi: 10.1113/jphysiol.1971.sp009432.

DOI:10.1113/jphysiol.1971.sp009432
PMID:5579638
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1331836/
Abstract
  1. Intracellular recordings have been made of the responses to light of single cones in the retina of the turtle. The shape of the hyperpolarizing response to a flash depends on the pattern of retinal illumination as well as the stimulus intensity.2. Although changes in the stimulus pattern can produce changes in the effective stimulus intensity, the responses to certain patterns cannot be matched by any adjustment of stimulus intensity.3. The initial portion of responses to large or small stimulating spots is proportional to light intensity; this allows comparison of responses when the amount of light on a cone is kept constant but the light on surrounding cones is changed. For equal light intensity on the cone, the response to a spot 2 or 4 mu in radius is smaller than that to a spot 70 mu in radius.4. Responses to spots 70 and 600 mu in radius coincide over their rising phases and peaks without any adjustment of stimulus intensity. The responses to the larger spot, however, contain a delayed depolarization not present with the smaller spot.5. During steady illumination of a cone with a small central spot, the response to transient illumination superimposed on the same area is greatly reduced. Illumination of cones in the near surround, however, produces a hyperpolarizing response, and illumination of cones in the more distant surround generates a delayed depolarization.6. The results described above suggested that synaptic signals might impinge on cones. This possibility was tested by electrically polarizing one retinal cell while recording from another.7. Currents passed through a cone within 40 mu of another cone can change the membrane potential of the latter. Not all cones within this distance show the interaction, however, and it has never been detected at distances greater than 50 mu.8. Hyperpolarization of a horizontal cell with applied current can produce a depolarization of a cone in the vicinity. During this depolarization, the response of the cone to a flash is reduced in size and altered in shape.9. It is concluded that the response of a cone to light may be modified by synaptic mechanisms which are activated by peripheral illumination.
摘要
  1. 已对海龟视网膜中单个视锥细胞对光的反应进行了细胞内记录。对闪光的超极化反应的形状取决于视网膜光照模式以及刺激强度。

  2. 尽管刺激模式的变化会导致有效刺激强度的改变,但对某些模式的反应无法通过任何刺激强度的调整来匹配。

  3. 对大或小刺激光斑反应的初始部分与光强度成正比;这使得当视锥细胞上的光量保持恒定但周围视锥细胞上的光发生变化时能够比较反应。对于视锥细胞上相同的光强度,半径为2或4微米的光斑的反应小于半径为70微米的光斑的反应。

  4. 对半径为70和600微米的光斑的反应在其上升阶段和峰值处重合,无需调整刺激强度。然而,对较大光斑的反应包含一个较小光斑所没有的延迟去极化。

  5. 在用小的中央光斑对视锥细胞进行持续光照期间,叠加在同一区域的短暂光照的反应会大大降低。然而,对视锥细胞近周边的光照会产生超极化反应,对视锥细胞更远周边的光照会产生延迟去极化。

  6. 上述结果表明突触信号可能作用于视锥细胞。通过在记录另一个视网膜细胞时对一个视网膜细胞进行电极极化来测试这种可能性。

  7. 通过距离另一个视锥细胞40微米内的视锥细胞施加的电流可以改变后者的膜电位。然而,并非这个距离内的所有视锥细胞都显示出这种相互作用,并且在大于50微米的距离从未检测到这种相互作用。

  8. 用施加电流使水平细胞超极化可导致附近视锥细胞去极化。在这种去极化期间,视锥细胞对闪光的反应大小减小且形状改变。

  9. 得出结论,视锥细胞对光的反应可能会被周边光照激活的突触机制所改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cda/1331836/c8be6509528c/jphysiol01028-0103-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cda/1331836/c8be6509528c/jphysiol01028-0103-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cda/1331836/c8be6509528c/jphysiol01028-0103-a.jpg

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Horizontal-cell like Dm9 neurons in modulate photoreceptor output to supply multiple functions in early visual processing.中的水平细胞样Dm9神经元调节光感受器输出,以在早期视觉处理中提供多种功能。
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