Lee Kavanau J
Department of Ecology and Evolutionary Biology, University of California, P.O. Box 951606, Los Angeles, CA 90095-1606, USA.
Sleep Med Rev. 2005 Apr;9(2):141-52. doi: 10.1016/j.smrv.2004.11.002.
A major controversy over REM sleep's role in memory processing may owe to inadequate allowances for the highly conservative nature of evolutionary adaptations. The controversy hinges on whether NREM sleep, alone, retains primitive memory processing capabilities. The selective pressure for primitive sleep, is thought to have been the need to obviate conflicts between enormous neural processing requirements of complex visual analysis and split-second control of movements, on the one hand, and memory processing, on the other. The most efficient memory processing during mammalian and avian sleep appears to be a two-step process: synapses in individual component circuits of events are reinforced primarily by slow brain waves during NREM sleep, with the reinforced components temporally bound by fast waves, and manifested as dreams, during REM sleep. This dual action could account for partitioning of sleep periods into multiple NREM-REM cycles. It is proposed that in the absence of REM sleep, all needed memory processing can be accomplished by NREM sleep, alone, though less efficiently. Many symptoms of fatal familial insomnia are attributed to subnormal nightly reinforcement of brain circuitry because of almost total loss of sleep, and compensatory responses thereto during waking. During this disorder, sensory circuitry seemingly is spared by virtue of its supernormal reinforcement during almost continuous waking. Contrariwise, sparing of an adult's 'higher faculties' in encephalitis lethargica appears to owe to supernormal circuit reinforcement during almost continuous sleep.
关于快速眼动睡眠在记忆处理中作用的一个主要争议,可能归因于对进化适应高度保守性质的考虑不足。这场争议的关键在于,非快速眼动睡眠是否独自保留了原始的记忆处理能力。原始睡眠的选择压力,一方面被认为是需要避免复杂视觉分析的巨大神经处理需求与瞬间运动控制之间的冲突,另一方面是避免与记忆处理之间的冲突。在哺乳动物和鸟类睡眠期间,最有效的记忆处理似乎是一个两步过程:在非快速眼动睡眠期间,事件的各个组成回路中的突触主要通过慢脑电波得到强化,强化的成分在快速眼动睡眠期间由快波进行时间上的绑定,并以梦的形式表现出来。这种双重作用可以解释睡眠周期被划分为多个非快速眼动 - 快速眼动周期的现象。有人提出,在没有快速眼动睡眠的情况下,所有所需的记忆处理都可以仅由非快速眼动睡眠单独完成,尽管效率较低。致命性家族性失眠的许多症状归因于由于几乎完全失眠导致的夜间大脑回路强化不足,以及清醒时对此的代偿反应。在这种疾病期间,感觉回路似乎因其在几乎持续清醒期间的超常强化而幸免。相反,昏睡性脑炎中成年人“高级功能”的幸免似乎归因于几乎持续睡眠期间的超常回路强化。