首页> 外文期刊>Investigative ophthalmology & visual science >Different inner retinal pathways mediate rod-cone input in irradiance detection for the pupillary light reflex and regulation of behavioral state in mice.
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Different inner retinal pathways mediate rod-cone input in irradiance detection for the pupillary light reflex and regulation of behavioral state in mice.

机译:在辐照检测中,瞳孔的光反射和小鼠行为状态的调节,不同的内部视网膜途径介导杆锥输入。

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PURPOSE: Detection of light in the eye contributes both to spatial awareness (form vision) and to responses that acclimate an animal to gross changes in light (irradiance detection). This dual role means that eye disease that disrupts form vision can also adversely affect physiology and behavioral state. The purpose of this study was to investigate how inner retinal circuitry mediating rod-cone photoreceptor input contributes to functionally distinct irradiance responses and whether that might account for phenotypic diversity in retinal disease. METHODS: The sensitivity of the pupillary light reflex and negative masking (activity suppression by light) was measured in wild-type mice with intact inner retinal circuitry, Nob4 mice that lack ON-bipolar cell function, and rd1 mice that lack rods and cones and, therefore, have no input to ON or OFF bipolar cells. RESULTS: An expected increase in sensitivity to negative masking with loss of photoreceptor input in rd1 was duplicated in Nob4 mice. In contrast, sensitivity of the pupillary light reflex was more severely reduced in rd1 than in Nob4 mice. CONCLUSIONS: Absence of ON-bipolar cell-mediated rod-cone input can fully explain the phenotype of outer retina degeneration for negative masking but not for the pupillary light reflex. Therefore, inner retinal pathways mediating rod-cone input are different for negative masking and the pupillary light reflex.
机译:目的:检测眼睛中的光既有助于空间意识(形成视觉),也有助于使动物适应光的总体变化(辐照度检测)。这种双重作用意味着破坏视力的眼部疾病也会不利地影响生理和行为状态。这项研究的目的是调查介导杆圆锥感光器输入的内部视网膜电路如何有助于功能上不同的辐照度响应,以及这是否可以解释视网膜疾病的表型多样性。方法:测量具有完整的内部视网膜电路的野生型小鼠,缺乏双极性细胞功能的Nob4小鼠和缺乏视杆和视锥细胞的rd1小鼠的瞳孔光反射和负掩盖(通过光抑制活动)的敏感性。因此,没有输入到ON或OFF双极电池。结果:在Nob4小鼠中,预期的rd1负光掩膜敏感性增加而感光细胞输入减少。相反,与Nob4小鼠相比,rd1中瞳孔光反射的敏感性大大降低。结论:缺乏双极细胞介导的视锥细胞输入可以充分解释为负掩蔽而不是为瞳孔光反射外视网膜变性的表型。因此,用于负圆锥遮罩和瞳孔光反射的介导杆锥输入的内部视网膜途径是不同的。

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