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兔视网膜中水平细胞对神经节细胞感受野外周的贡献分析。

Analysis of the horizontal cell contribution to the receptive field surround of ganglion cells in the rabbit retina.

作者信息

Mangel S C

机构信息

Department of Ophthalmology and Physiology, University of Alabama, Birmingham 35294.

出版信息

J Physiol. 1991 Oct;442:211-34. doi: 10.1113/jphysiol.1991.sp018790.

Abstract
  1. The influence of horizontal cells on ganglion cells, the output neuron of the retina, was examined in an in vitro rabbit eyecup preparation. The extracellular spike activity of ganglion cells was monitored while pulsatile DC or sinusoidally modulated current was injected intracellularly into nearby horizontal cells. Interactions between the effects of light stimulation and horizontal cell current injections on ganglion cell responses were also examined. 2. Horizontal cells were found to contribute to the receptive field surround of ganglion cells. In particular, horizontal cells contributed to surround excitability and to surround antagonism of the centre light response. 3. Brisk, sluggish and direction-selective ganglion cells were all affected by current injections into horizontal cells. However, brisk ganglion cells responded to lower amplitude currents than did sluggish or direction-selective cells. 4. Horizontal cells with receptive fields that overlap those of ganglion cells were able to affect ganglion cell discharge. Moreover, the closer a horizontal cell was to the receptive field centre of a ganglion cell, the more effective were current injections in modulating ganglion cell discharge rate. The length constant of the horizontal cell contribution to the ganglion cell receptive field was approximately 200 microns. These results indicate that horizontal cells which are located within or outside of a ganglion cell's receptive field centre can influence that ganglion cell's activity. 5. The influence of horizontal cells on ganglion cell discharges was relatively weak at low temporal frequencies of sinusoidally modulated current. 6. Application of 2-amino-4-phosphonobutyrate (APB), a glutamate analogue, blocked the modulation of spike activity of on-centre ganglion cells that was induced by sinusoidally modulated current injected into nearby horizontal cells. The spike activity of off-centre ganglion cells was not blocked. 7. These findings suggest that horizontal cells contribute to the surround of ganglion cells and bipolar cells primarily through a feedback pathway onto cone photoreceptor cells.
摘要
  1. 在体外兔眼杯制备中研究了水平细胞对视网膜输出神经元神经节细胞的影响。向附近水平细胞内注入脉动直流电或正弦调制电流时,监测神经节细胞的细胞外锋电位活动。还研究了光刺激和水平细胞电流注入对神经节细胞反应的影响之间的相互作用。2. 发现水平细胞对神经节细胞的感受野周边有贡献。特别是,水平细胞对周边兴奋性和对中心光反应的周边拮抗作用有贡献。3. 向水平细胞注入电流会影响快适应、慢适应和方向选择性神经节细胞。然而,快适应神经节细胞对较低幅度电流的反应比慢适应或方向选择性细胞更敏感。4. 感受野与神经节细胞感受野重叠的水平细胞能够影响神经节细胞的放电。此外,水平细胞离神经节细胞感受野中心越近,电流注入对调节神经节细胞放电率就越有效。水平细胞对神经节细胞感受野的贡献的长度常数约为200微米。这些结果表明,位于神经节细胞感受野中心内外的水平细胞可以影响该神经节细胞的活动。5. 在正弦调制电流的低时间频率下,水平细胞对神经节细胞放电的影响相对较弱。6. 应用谷氨酸类似物2-氨基-4-膦酰丁酸(APB)可阻断注入附近水平细胞的正弦调制电流诱导的on-中心神经节细胞锋电位活动的调制。off-中心神经节细胞的锋电位活动未被阻断。7. 这些发现表明,水平细胞主要通过反馈途径作用于视锥光感受器细胞,从而对神经节细胞和双极细胞的周边产生影响。

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