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首页> 外文期刊>Brain research >Novelty-induced correlation between visual neurons and the hippocampal theta rhythm in sleep and wakefulness.
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Novelty-induced correlation between visual neurons and the hippocampal theta rhythm in sleep and wakefulness.

机译:睡眠和清醒中视觉神经元和海马theta节律之间的新颖性相关性。

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摘要

Various rhythms have been shown to affect sensory processing such as the waking-sleep cycle and the hippocampal theta waves. Changes in the firing of visual lateral geniculate nucleus neurons have been reported to be dependent on the animal's behavioral state. The lateral geniculate extracellular neuronal firing and hippocampal field activity were recorded in chronically implanted animals to analyze the relationship during quiet wakefulness and sleep associated with stimulation shifts that may introduce novelty. During wakefulness, a change in light flash stimulation pattern (stimuli frequency shift, stimuli on and off) caused an increment in the theta band power in 100% of the cases and a phase-locking of the spikes in 53% of the recorded neurons. During slow wave sleep, there were no consistent changes in the theta power notwithstanding 13% of the neurons exhibited phase-locking, i.e., novelty may induce changes in the temporal correlation of visual neuronal activity with the hippocampal theta rhythm in sleep. The present results suggest that visual processing in slow wave sleep exists, while auditory information and learning were reported during slow wave sleep in animals and newborn humans. The changes in the theta power as well as in the neuronal phase-locking amount indicate that in slow wave sleep, the ability of the hippocampus to detect/process novelty, although present, may be decreased. This is consistent with the noticeable decrease in awareness of the environment during sleep.
机译:已经显示出各种节律会影响感觉处理,例如苏醒-睡眠周期和海马θ波。据报道,视觉外侧膝状中枢神经元神经元放电的变化取决于动物的行为状态。在慢性植入的动物中记录了外侧膝状细胞外神经元的放电和海马野外活动,以分析安静清醒和睡眠期间与可能引入新颖性的刺激变化相关的关系。在清醒期间,闪光刺激模式的变化(刺激频率偏移,刺激打开和关闭)导致100%的病例的θ带功率增加,并且在53%的记录神经元中出现了峰值锁相。在慢波睡眠过程中,尽管13%的神经元表现出锁相,但theta功率并没有一致的变化,即新颖性可能会导致视觉神经元活动与睡眠中海马theta节律的时间相关性发生变化。目前的结果表明,慢波睡眠中存在视觉处理,而在动物和新生儿的慢波睡眠过程中,听觉信息和学习据报道。 θ功率以及神经元锁相量的变化表明,在慢波睡眠中,尽管存在海马体检测/处理新事物的能力可能会降低。这与睡眠期间对环境的意识明显下降是一致的。

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