首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Fos immunoreactivity in rat subcortical visual shell in response to illuminance changes.
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Fos immunoreactivity in rat subcortical visual shell in response to illuminance changes.

机译:在大鼠皮层下视层中的Fos免疫反应性,以响应照度变化。

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Immediate early gene expression has been used frequently as a marker of activity in the circadian visual system. Recent evidence suggests that the pretectum participates in orchestrating sleep and circadian responses to light. Lesions of the pretectum eliminate dark shift-induced rapid eye movement sleep triggering in albino rats, and compromise circadian phase shifts in hamsters. We hypothesized that regions of the pretectum respond to light with robust and region-specific Fos activation, similar to the suprachiasmatic nucleus and intergeniculate leaflet. We used Fos expression, the protein product of the immediate early gene c-fos, as a functional marker to measure the responses of neurons following acute lighting changes. Rats maintained on a 12:12 light-dark cycle were subjected to a shift from light-to-dark or from dark-to-light at midday (Zeitgeber time 6) or midnight (Zeitgeber time 18). Fos expression was visualized with immunocytochemistry and quantified with an automated scoring system. We found three regions in the pretectum (the olivary pretectal nucleus, posterior limitans, and a region homologous to the hamster commissural pretectal nucleus), and two regions in the lateral geniculate complex (the intergeniculate leaflet and ventral lateral geniculate nucleus) that demonstrated significant Fos activation in response to light. Furthermore, the olivary pretectal nucleus, the posterior limitans, and the ventral lateral geniculate nucleus showed preferential Fos activation after acute light onset rather than following chronic exposure to light at midday, whereas at midnight these nuclei showed Fos activation following both chronic light exposure and acute light onset. Given the extensive anatomical connections between pretectal nuclei and other nuclei in the subcortical visual shell, as well as with centers for sleep and arousal, it is highly plausible that these pretectal nuclei integrate information about changes in illuminance, and aid in the coordination of acute behavioral responses to light.
机译:立即早期基因表达已被频繁地用作昼夜节律视觉系统中的活性标记。最近的证据表明,前庭参与协调睡眠和昼夜节律对光的反应。前庭病变消除了白化病大鼠中由黑移引起的快速眼动睡眠触发,并损害了仓鼠的昼夜节律相移。我们假设前区的区域对光具有强力且区域特异性的Fos激活,类似于视交叉上核和跨生叶。我们使用Fos表达,即早期早期基因c-fos的蛋白质产物,作为功能标记来测量急性光照变化后神经元的反应。在中午(Zeitgeber时间6)或午夜(Zeitgeber时间18),将大鼠维持在12:12的明暗周期,进行从明到暗或从暗到亮的转换。 Fos表达通过免疫细胞化学可视化,并通过自动评分系统进行定量。我们在前盖区发现了三个区域(橄榄形前盖核,后限和与仓鼠连合前盖膜核同源的区域),以及在外侧膝状复合体中的两个区域(中间膝状小叶和腹侧外侧膝状核)激活以响应光。此外,橄榄色的前盖核,后限骨和腹外侧膝状核在急性光发作后表现出优先的Fos活化,而不是在午后长期暴露于光后;而在午夜,这些核在慢性光暴露和急性后均表现出Fos活化。轻度发作。考虑到前皮质核与皮层下视觉壳内其他核之间的广泛解剖联系以及睡眠和唤醒中心,这些前皮质核整合了有关照度变化的信息,并有助于协调急性行为,这是非常有可能的。对光的反应。

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