首页> 美国卫生研究院文献>The Journal of Neuroscience >Highly Specific Role of Hypocretin (Orexin) Neurons: Differential Activation as a Function of Diurnal Phase Operant Reinforcement versus Operant Avoidance and Light Level
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Highly Specific Role of Hypocretin (Orexin) Neurons: Differential Activation as a Function of Diurnal Phase Operant Reinforcement versus Operant Avoidance and Light Level

机译:促胰泌素(Orexin)神经元的高度特定作用:差异激活与昼夜阶段操作员强化与操作员回避和光照水平的关系

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摘要

Hypocretin (Hcrt) cell loss is responsible for narcolepsy, but Hcrt's role in normal behavior is unclear. We found that Hcrt knock-out mice were unable to work for food or water reward during the light phase. However, they were unimpaired relative to wild-type (WT) mice when working for reward during the dark phase or when working to avoid shock in the light or dark phase. In WT mice, expression of Fos in Hcrt neurons occurs only in the light phase when working for positive reinforcement. Expression was seen throughout the mediolateral extent of the Hcrt field. Fos was not expressed when expected or unexpected unearned rewards were presented, when working to avoid negative reinforcement, or when given or expecting shock, even though these conditions elicit maximal electroencephalogram (EEG) arousal. Fos was not expressed in the light phase when light was removed. This may explain the lack of light-induced arousal in narcoleptics and its presence in normal individuals. This is the first demonstration of such specificity of arousal system function and has implications for understanding the motivational and circadian consequences of arousal system dysfunction. The current results also indicate that comparable and complementary specificities must exist in other arousal systems.
机译:降钙素(Hcrt)细胞丢失是导致发作性睡病的原因,但Hcrt在正常行为中的作用尚不清楚。我们发现,Hcrt基因敲除小鼠在光照阶段无法工作以获取食物或水。但是,当它们在黑暗阶段寻求奖励时或在避免在光亮或黑暗阶段受到电击时,它们相对于野生型(WT)小鼠而言并没有受损。在野生型小鼠中,Hcrt神经元中Fos的表达仅在为正增强工作时在轻相中发生。整个Hcrt区域的中外侧可见表达。当提出预期或意外的未得奖赏,为避免负增强而努力,给予或期待电击时,即使这些情况引起最大的脑电图(EEG)唤醒,也没有表达Fos。当去除光时,在光相中不表达Fos。这可能解释了麻醉药缺乏光诱导的唤醒作用以及在正常个体中的存在。这是唤醒系统功能这种特殊性的第一个证明,对于理解唤醒系统功能障碍的动机和昼夜节律的后果具有启示意义。目前的结果还表明,在其他唤醒系统中必须存在可比和互补的特异性。

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