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兔视网膜神经节细胞的新特性。

New properties of rabbit retinal ganglion cells.

作者信息

Caldwell J H, Daw N W

出版信息

J Physiol. 1978 Mar;276:257-76. doi: 10.1113/jphysiol.1978.sp012232.

Abstract
  1. Receptive fields of centre surround cells in the rabbit retina were investigated. There is a clear distinction between cells with sluggish responses, low spontaneous activity and slow conduction velocity (centre surround sluggish cells) and cells with brisk responses, higher spontaneous activity and faster conduction velocity (X and Y cells). The sluggish cells can be divided into sustained and transient types. X and Y cells can be distinguished from each other by their responses to a moving linear grating, a large rapidly moving object and whether or not there is a response to the alternation of certain stimuli. Some times the response to a rotating radial grating, the rate of spontaneous activity, and whether or not the response to spots and annuli was sustained or transient could also be used to distinguish these two types. The antidromic latency from electrical stimulation of the optic chiasm and the periphery effect did not distinguish X from Y. 2. Eleven colour coded units were investigated. They all gave on responses to blue light in the centre of their receptive field and off responses to green light in the periphery of their receptive field. The blue pigment had a spectral sensitivity peaking at about 465 nm. The other pigment peaked near 500 nm, like the rods but gave a response at high mesopic and probably photopic levels. In some cases there was evidence for excitatory input from the green receptors to the centre of the receptive field. All the colour coded cells had rapidly conducting axons and were on centre X cells by all criteria. 3. Eighty-five cells various types other than colour coded were tested for their thresholds at 420 nm and 590 nm. In all cases the results were explained by a pigment peaking close to 500 nm, even at high mesopic and low photopic levels, which suggests the existence of cones with a cyan pigment in them. 4. Conduction latency from stimulation at the optic chiasm was measured for cells with centre surround receptive fields and cells with more complex receptive fields. Both 'on-off' and 'on' directionally sensitive cells have short conduction latencies, overlapping X and Y cells. Orientation selective cells and local edge detectors have long conduction latencies, overlapping centre surround sluggish cells. The sample of uniformity detectors was too small to characterize...
摘要
  1. 对兔视网膜中心环绕细胞的感受野进行了研究。反应迟缓、自发活动低且传导速度慢的细胞(中心环绕迟缓细胞)与反应敏锐、自发活动较高且传导速度较快的细胞(X细胞和Y细胞)之间存在明显区别。迟缓细胞可分为持续型和瞬变型。X细胞和Y细胞可通过它们对移动线性光栅、大型快速移动物体的反应以及对某些刺激交替是否有反应来相互区分。有时,对旋转径向光栅的反应、自发活动速率以及对光点和光环的反应是持续还是瞬变也可用于区分这两种类型。来自视交叉电刺激的逆向潜伏期和周边效应无法区分X细胞和Y细胞。2. 研究了11个颜色编码单元。它们在感受野中心对蓝光均产生开反应,在感受野周边对绿光产生关反应。蓝色色素的光谱敏感性在约465纳米处达到峰值。另一种色素在500纳米附近达到峰值,类似于视杆细胞,但在中明视觉和可能的明视觉水平下产生反应。在某些情况下,有证据表明存在从绿色感受器到感受野中心的兴奋性输入。所有颜色编码细胞都有快速传导的轴突,根据所有标准均为中心开X细胞。3. 对85个非颜色编码的各类细胞在420纳米和590纳米处的阈值进行了测试。在所有情况下,结果都可由一种在接近500纳米处达到峰值的色素来解释,即使在中明视觉和低明视觉水平也是如此,这表明存在含有蓝绿色素的视锥细胞。4. 测量了具有中心环绕感受野的细胞和具有更复杂感受野的细胞从视交叉刺激开始的传导潜伏期。“开 - 关”和“开”方向敏感细胞的传导潜伏期都很短,与X细胞和Y细胞重叠。方向选择性细胞和局部边缘检测器的传导潜伏期很长,与中心环绕迟缓细胞重叠。均匀性检测器的样本太小,无法进行特征描述……

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