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视锥细胞促使泥螈视网膜中水平细胞发生光诱发的、多巴胺介导的解偶联。

Cones contribute to light-evoked, dopamine-mediated uncoupling of horizontal cells in the mudpuppy retina.

作者信息

Myhr K L, Dong C J, McReynolds J S

机构信息

Department of Physiology, University of Michigan, Ann Arbor 48109-0622.

出版信息

J Neurophysiol. 1994 Jul;72(1):56-62. doi: 10.1152/jn.1994.72.1.56.

Abstract
  1. The relative effectiveness of adapting lights of different wave-lengths on uncoupling of horizontal cells was measured in dark-adapted mudpuppy retinas. Diffuse blue (470 nm) or red (620 nm) adapting stimuli were adjusted in intensity to be equally effective for rods or for cones. Uncoupling of horizontal cells was measured by intracellular recording of changes in their responses to spot and annulus stimuli. The intensities of the adapting light pairs were varied over 3 log units. The responses of the horizontal cells indicated that both rods and cones were stimulated by the adapting lights. 2. Relatively dim adapting lights did not produce detectable changes in horizontal cell coupling. Brighter adapting lights caused uncoupling of horizontal cells. When the brighter adapting lights were rod matched, the uncoupling effect of the 620-nm light was significantly greater than that of the 470 nm light, indicating that cones contribute to the uncoupling effect. 3. When the adapting lights were cone matched, the effects of the two wavelengths were not significantly different, but this did not rule out a rod contribution because the effective adapting lights probably produced maximal or nearly maximal, and hence equal or nearly equal, responses in rods. 4. The results indicate that cones contribute to the light-evoked uncoupling of horizontal cells in mudpuppy, although a contribution from rods could not be ruled out. Because it was shown previously that light-evoked uncoupling of horizontal cells in mudpuppy is mediated by dopamine, the results also suggest that cones contribute to the light-evoked release of dopamine.
摘要
  1. 在暗适应的泥螈视网膜中,测量了不同波长的适应光对水平细胞去耦联的相对有效性。漫射蓝光(470纳米)或红光(620纳米)适应刺激的强度被调整为对视杆细胞或视锥细胞同样有效。通过细胞内记录水平细胞对光点和环形刺激反应的变化来测量水平细胞的去耦联。适应光对的强度在3个对数单位范围内变化。水平细胞的反应表明,适应光对视杆细胞和视锥细胞都有刺激作用。2. 相对较暗的适应光不会使水平细胞耦合产生可检测到的变化。较亮的适应光会导致水平细胞去耦联。当较亮的适应光与视杆细胞匹配时,620纳米光的去耦联效应明显大于470纳米光,表明视锥细胞对去耦联效应有贡献。3. 当适应光与视锥细胞匹配时,两种波长的效应没有显著差异,但这并不排除视杆细胞的贡献,因为有效的适应光可能在视杆细胞中产生最大或接近最大的反应,因此反应相等或接近相等。4. 结果表明,视锥细胞对泥螈水平细胞的光诱发去耦联有贡献,尽管不能排除视杆细胞的贡献。因为先前已表明泥螈水平细胞的光诱发去耦联是由多巴胺介导的,所以结果还表明视锥细胞对光诱发的多巴胺释放有贡献。

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