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Absence of Normal Photic Integration in the Circadian Visual System: Response to Millisecond Light Flashes

机译:昼夜节律视觉系统中缺乏正常的光合:对毫秒闪光的响应

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摘要

Light is the most prominent synchronizing stimulus for circadian rhythms. The circadian visual system responds in accordance with the energy content of photic stimuli longer than a few seconds. Here, as few as three flashes (2 ms each delivered to hamsters over 5 or 60 min at circadian time 19) elicited large phase advances. Ten or more flashes were required to induce FOS protein in the suprachiasmatic nucleus (SCN), and such induction occurred throughout the entire SCN, as well as outside the nucleus. High-density flash stimulation (0.5 s interflash interval) was ineffective, but response increased as the interval increased up to 4 s. In an irradiance response test, phase shifts appeared to be all-or-none with threshold irradiance between 140 and 1070 μW/cm2, implying lack of stimulus energy summation. Nevertheless, an irradiance ineffective when delivered as 10 flashes induced phase shifts when given as100 flashes, but the response was substantially smaller than elicited by 10 flashes, each with ∼1 log unit more irradiance. The results also show reduced sensitivity of flash-induced FOS response in the intergeniculate leaflet compared with the SCN, contrary to studies using longer light stimuli. Masking was robust and prolonged in response to 10 flashes. The data demonstrate that the circadian visual system responds markedly to brief, intense light stimuli without normal photic integration. This may involve a second input pathway different from that mediating the effects of longer, dimmer photic stimuli.
机译:光是昼夜节律最突出的同步刺激。昼夜节律视觉系统根据光刺激的能量含量做出响应的时间长于几秒钟。在这里,只有短短的三次闪烁(在昼夜节律时间19的5或60分钟内,每次2 ms传递给仓鼠)会引起较大的相移。需要十次或更多次闪光以诱导眼裂上核(SCN)中的FOS蛋白,并且这种诱导发生在整个SCN以及细胞核之外。高密度闪光刺激(闪光间隔0.5 s)无效,但随着间隔增加至4 s,反应增强。在辐照度响应测试中,相移似乎是全部或没有,阈值辐照度在140和1070μW/ cm 2 之间,这意味着缺乏刺激能量总和。然而,当以10次闪光传递时,辐照度无效,当以100次闪光给出时,会引起相移,但响应比10次闪烁引起的相移要小得多,每次辐照度约高1个对数单位。结果还显示,与使用SCN的研究相比,与SCN相比,跨生代小叶中的闪光诱导的FOS反应敏感性降低。遮罩功能强大,可以响应10次闪光。数据表明,昼夜节律视觉系统对短暂,强烈的光刺激反应明显,而没有正常的光合。这可能涉及第二种输入途径,该途径不同于介导更长的,暗淡的光刺激的作用。

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