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Sleep modifies retinal ganglion cell responses in the normal rat

机译:睡眠改变正常大鼠的视网膜神经节细胞反应

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Recordings were obtained from the visual system of rats as they cycled normally between waking (W), slow-wave sleep (SWS), and rapid eye movement (REM) sleep. Responses to flashes delivered by a light-emitting diode attached permanently to the skull were re- corded through electrodes implanted on the cornea, in the chiasm. and on the cortex. The chiasm response reveals the temporal order in which the activated ganglion cell population exits the eyeball, as reported. this triphasic event is invariably short in latency (5-10 ms) and around 300 ms in duration, called the histogram. Here we describe the differences in the histograms recorded during W, SWS. and REM. SWS histograms are always larger than W histograms, and an REM histogram can resemble either. In other words, the optic nerve response to a given stimulus is labile, its configuration depends on whether the rat is asleep or awake. We link this physiological information with the anatomical fact that the brain dorsal raphe region. which is known to have a sleep regulatory role. sends fibers to the rat retina and receives fibers from it. At the cortical electrode, the visual cortical response amplitudes also vary, being largest during SWS. This well known phenomenon often is explained by changes taking place at the thalamic level. However, in the rat, the labile cortical response covaries with the labile optic nerve response, which suggests the cortical response enhancement during SWS is deter- mined more by what happens in the retina than by what happens in the thalamus.
机译:从大鼠的视觉系统获得记录,因为它们在清醒(W),慢波睡眠(SWS)和快速眼动(REM)睡眠之间正常循环。永久性附着在颅骨上的发光二极管对闪光的反应通过植入在角膜中的角膜上的电极记录。在皮层上如所报道的,chiasm反应揭示了激活的神经节细胞群离开眼球的时间顺序。这种三次事件总是等待时间短(5-10 ms),持续时间大约300 ms,称为直方图。在这里,我们描述了在W,SWS期间记录的直方图的差异。和REM。 SWS直方图始终大于W直方图,而REM直方图也可以类似。换句话说,对给定刺激的视神经反应不稳定,其构造取决于大鼠是睡着还是醒着。我们将此生理信息与大脑背侧缝区的解剖学事实联系起来。众所周知,它具有睡眠调节作用。将纤维发送到大鼠视网膜并从其接收纤维。在皮层电极处,视觉皮层响应幅度也有所变化,在SWS期间最大。这种众所周知的现象通常可以通过在丘脑水平发生的变化来解释。然而,在大鼠中,不稳定的皮质反应与不稳定的视神经反应共变,这表明SWS期间皮质反应增强的作用更多地取决于视网膜发生的情况而不是丘脑发生的作用。

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