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J Physiol. 1974 Jul;240(2):457-92. doi: 10.1113/jphysiol.1974.sp010618.
2
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3
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本文引用的文献

1
The contrast sensitivity of retinal ganglion cells of the cat.猫视网膜神经节细胞的对比敏感度。
J Physiol. 1966 Dec;187(3):517-52. doi: 10.1113/jphysiol.1966.sp008107.
2
EVIDENCE THAT MCILWAIN'S PERIPHERY EFFECT IS NOT A STRAY LIGHT ARTIFACT.麦克利恩周边效应并非杂散光假象的证据。
J Neurophysiol. 1965 May;28:555-9. doi: 10.1152/jn.1965.28.3.555.
3
RECEPTIVE FIELDS OF OPTIC TRACT AXONS AND LATERAL GENICULATE CELLS: PERIPHERAL EXTENT AND BARBITURATE SENSITIVITY.视束轴突和外侧膝状体细胞的感受野:外周范围和巴比妥类药物敏感性
J Neurophysiol. 1964 Nov;27:1154-73. doi: 10.1152/jn.1964.27.6.1154.
4
RETINAL GANGLION CELLS RESPONDING SELECTIVELY TO DIRECTION AND SPEED OF IMAGE MOTION IN THE RABBIT.兔视网膜神经节细胞对图像运动的方向和速度具有选择性反应。
J Physiol. 1964 Oct;173(3):377-407. doi: 10.1113/jphysiol.1964.sp007463.
5
The determination of the projection of the visual field on to the lateral geniculate nucleus in the cat.猫的视野投射到外侧膝状体的测定。
J Physiol. 1962 Oct;163(3):503-39. doi: 10.1113/jphysiol.1962.sp006991.
6
Intraretinal recording with micropipette electrodes in the intact cat eye.在完整的猫眼内使用微电极进行视网膜内记录。
J Physiol. 1959 Dec;149(3):537-62. doi: 10.1113/jphysiol.1959.sp006360.
7
Receptive fields of ganglion cells in the cat's retina.猫视网膜中神经节细胞的感受野。
J Physiol. 1960 Oct;153(3):583-94. doi: 10.1113/jphysiol.1960.sp006557.
8
Anatomy and physiology of vision in the frog (Rana pipiens).青蛙(豹蛙)视觉的解剖学与生理学
J Gen Physiol. 1960 Jul;43(6)Suppl(6):129-75. doi: 10.1085/jgp.43.6.129.
9
Receptive fields of optic nerve fibres in the spider monkey.蜘蛛猴视神经纤维的感受野
J Physiol. 1960 Dec;154(3):572-80. doi: 10.1113/jphysiol.1960.sp006596.
10
Integrative action in the cat's lateral geniculate body.猫外侧膝状体的整合作用。
J Physiol. 1961 Feb;155(2):385-98. doi: 10.1113/jphysiol.1961.sp006635.

猫视网膜中罕见类型神经节细胞的特性及总体分类

Properties of rarely encountered types of ganglion cells in the cat's retina and an overall classification.

作者信息

Cleland B G, Levick W R

出版信息

J Physiol. 1974 Jul;240(2):457-92. doi: 10.1113/jphysiol.1974.sp010618.

DOI:10.1113/jphysiol.1974.sp010618
PMID:4420300
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1331024/
Abstract
  1. In a reference sample of 960 cat retinal ganglion cells, seventy-three had receptive fields departing from the concentric centre-surround pattern.2. Five classes were distinguished among the subset: local edge detectors, direction-selective cells, colour-coded cells, uniformity detectors, edge inhibitory off-centre cells.3. Local edge detectors (forty-five) possessed a radially symmetrical pattern of responses to both centrifugal and centripetal movements of both black and white small targets, an on-off receptive field with a silent inhibitory surround and a low or zero maintained discharge. Their operation could be interpreted as the detection of a contrasting border confined to a small region of the visual field.4. With direction-selective units (eleven) it was possible to find an axis through the receptive field along which sharply different responses could be obtained for opposite directions of movement of small black or white targets.5. Colour units (six) were mostly of the single opponent type having excitatory input from blue-sensitive cones and inhibitory input from long wave-length cones. Both inputs coexisted at the centre of the field and either could be spatially more extensive than the other. One example changed over to rod input under scotopic conditions, another did not.6. Uniformity detectors (five) had a brisk maintained discharge which was reduced or abolished temporarily by all forms of visual stimulation.7. Edge inhibitory off-centre units (three) behaved like uniformity detectors for small targets and fine gratings but like off-centre on-surround units for large targets. Their receptive fields consisted of three concentric regions: a small sized, central edge inhibitory region; a larger zone of off-responsiveness; and an outlying annulus of on-responsiveness.8. It is argued that the above physiological types belong to the morphologically heterogeneous class of cells called gamma cells. The argument is based on similarity in the sizes of receptive fields and dendritic trees and on evidence that the axons are thinner than those of the brisk-sustained and brisk-transient ganglion cells.9. The physiological classification of cat retinal ganglion cells developed in this paper and the preceding one is summarized in a Table.10. It now appears that cat and rabbit possess a qualitatively similar complement of receptive field types among their ganglion cells; the differences reside in the quantitative expression of the various classes.
摘要
  1. 在一个包含960个猫视网膜神经节细胞的参考样本中,有73个细胞的感受野偏离了同心的中心 - 周边模式。

  2. 在这个子集中区分出了五类:局部边缘检测器、方向选择性细胞、颜色编码细胞、均匀性检测器、边缘抑制性偏心细胞。

  3. 局部边缘检测器(45个)对黑色和白色小目标的离心和向心运动都具有径向对称的反应模式,是一种具有沉默抑制性周边的开 - 关型感受野,且维持放电较低或为零。它们的运作可解释为对局限于视野小区域内的对比边界的检测。

  4. 对于方向选择性单元(11个),可以找到一条穿过感受野的轴,沿着该轴,小黑色或白色目标向相反方向运动时可获得截然不同的反应。

  5. 颜色单元(6个)大多是单一拮抗型,具有来自蓝敏视锥细胞的兴奋性输入和来自长波长视锥细胞的抑制性输入。这两种输入在感受野中心共存,且其中一种在空间上可能比另一种更广泛。一个例子在暗视条件下转变为杆体细胞输入,另一个则没有。

  6. 均匀性检测器(5个)有活跃的维持放电,所有形式的视觉刺激都会使其暂时减少或消除。

  7. 边缘抑制性偏心单元(3个)对于小目标和精细光栅的表现类似于均匀性检测器,但对于大目标则类似于偏心开 - 周边单元。它们的感受野由三个同心区域组成:一个小尺寸的中央边缘抑制区域;一个较大的无反应区域;以及一个外围的有反应环形区域。

  8. 有人认为上述生理类型属于被称为γ细胞的形态学异质细胞类别。这一观点基于感受野和树突树大小的相似性,以及轴突比快速持续型和快速瞬变型神经节细胞的轴突更细的证据。

  9. 本文及前文所阐述的猫视网膜神经节细胞的生理分类总结在一个表格中。

  10. 现在看来,猫和兔子的神经节细胞中在感受野类型的性质上具有相似的补充;差异在于各类别的数量表达。