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蟑螂视网膜电图中的昼夜节律。

Circadian rhythms in the electroretinogram of the cockroach.

作者信息

Wills S A, Page T L, Colwell C S

机构信息

Department of General Biology, Vanderbilt University, Nashville, Tennessee 37325.

出版信息

J Biol Rhythms. 1985;1(1):25-37. doi: 10.1177/074873048600100105.

Abstract

Circadian regulation of the amplitude of the electroretinogram (ERG) of the cockroach Leucophaea maderae was investigated. Two components of the ERG exhibited circadian rhythms in amplitude. Interestingly, the peak amplitudes for the two rhythms were approximately 12 hr out of phase. The dominant corneal negative potential (the "sustained component") exhibited maximum amplitude during the subjective night. A second corneal negative potential (the "off-transient") was at a maximum during the subjective day. Intensity-response curves of the sustained component were measured at both the peak and trough of the rhythm. The results showed that the circadian rhythm in amplitude reflected a sensitivity change equivalent to 0.2-0.6 log unit of intensity. An effort was also made to identify the anatomical locus of the pacemaking oscillator for the ERG rhythm in a series of lesion experiments. Neural isolation of the optic lobe from the midbrain by bisection of the optic lobe proximal to the distal edge of the lobula had no effect on the circadian rhythm of ERG amplitude. Bisection of the optic lobe distal to the lobula abolished the ERG amplitude rhythm. These results suggest that the pacemaker is located in the optic lobe near the lobula; that its motion continues in the absence of neural connections with the rest of the nervous system; and that its regulation of ERG amplitude depends on neural pathways in the optic lobe.

摘要

研究了德国蜚蠊视网膜电图(ERG)振幅的昼夜节律。ERG的两个成分在振幅上呈现昼夜节律。有趣的是,这两种节律的峰值振幅大约相差12小时。主要的角膜负电位(“持续成分”)在主观夜间呈现最大振幅。第二个角膜负电位(“关闭瞬变”)在主观白天达到最大值。在节律的峰值和谷值处测量持续成分的强度-反应曲线。结果表明,振幅的昼夜节律反映了相当于0.2-0.6对数单位强度的敏感性变化。在一系列损伤实验中,还努力确定了ERG节律的起搏振荡器的解剖位置。通过在小叶远端边缘近端将视叶二等分,使视叶与中脑神经隔离,对ERG振幅的昼夜节律没有影响。在小叶远端将视叶二等分消除了ERG振幅节律。这些结果表明,起搏器位于小叶附近的视叶中;在与神经系统其他部分没有神经连接的情况下,其活动仍在继续;并且其对ERG振幅的调节取决于视叶中的神经通路。

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