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梦境奇异感是 REM 睡眠中神经元行为改变的认知相关物。

Dream Bizarreness as the Cognitive Correlate of Altered Neuronal Behavior in REM Sleep.

机构信息

Laboratory of Neurophysiology, Harvard Medical School.

出版信息

J Cogn Neurosci. 1989 Summer;1(3):201-22. doi: 10.1162/jocn.1989.1.3.201.

Abstract

Bizarreness is a cognitive feature common to REM sleep dreams, which can be easily measured. Because bizarreness is highly specific to dreaming, we propose that it is most likely brought about by changes in neuronal activity that are specific to REM sleep. At the level of the dream plot, bizarreness can be defined as either discontinuity or incongruity. In addition, the dreamer's thoughts about the plot may be logically deficient. We propose that dream bizarreness is the cognitive concomitant of two kinds of changes in neuronal dynamics during REM sleep. One is the disinhibition of forebrain networks caused by the withdrawal of the modulatory influences of norepinephrine (NE) and serotonin (5HT) in REM sleep, secondary to cessation of firing of locus coeruleus and dorsal raphe neurons. This aminergic demodulation can be mathematically modeled as a shift toward increased error at the outputs from neural networks, and these errors might be represented cognitively as incongruities and/or discontinuities. We also consider the possibility that discontinuities are the cognitive concomitant of sudden bifurcations or "jumps" in the responses of forebrain neuronal networks. These bifurcations are caused by phasic discharge of pontogeniculooccipital (PGO) neurons during REM sleep, providing a source of cholinergic modulation to the forebrain which could evoke unpredictable network responses. When phasic PGO activity stops, the resultant activity in the brain may be wholly unrelated to patterns of activity dominant before such phasic stimulation began. Mathematically such sudden shifts from one pattern of activity to a second, unrelated one is called a bifurcation. We propose that the neuronal bifurcations brought about by PGO activity might be represented cognitively as bizarre discontinuities of dream plot. We regard these proposals as preliminary attempts to model the relationship between dream cognition and REM sleep neurophysiology. This neurophysiological model of dream bizarreness may also prove useful in understanding the contributions of REM sleep to the developmental and experiential plasticity of the cerebral cortex.

摘要

奇异是 REM 睡眠梦的一个认知特征,很容易测量。因为奇异是做梦所特有的,所以我们推测它很可能是由 REM 睡眠中特定的神经元活动变化引起的。在梦境情节层面上,奇异可以定义为不连续性或不一致性。此外,梦者对情节的思考可能在逻辑上存在缺陷。我们提出,梦境奇异是 REM 睡眠中两种神经元动力学变化的认知伴随物。一种是去甲肾上腺素(NE)和血清素(5HT)调制作用的撤回引起的前脑网络的去抑制,这是蓝斑和中缝背核神经元放电停止的结果。这种单胺能去调制可以用神经网络输出的误差增加来进行数学建模,这些误差可能在认知上表现为不一致性和/或不连续性。我们还考虑了这样一种可能性,即不连续性是前脑神经网络反应的突然分叉或“跳跃”的认知伴随物。这些分叉是由 REM 睡眠中桥脑-枕叶(PGO)神经元的相位放电引起的,为前脑提供了胆碱能调制的来源,这可能会引起不可预测的网络反应。当相位 PGO 活动停止时,大脑的活动结果可能与相位刺激开始前占主导地位的活动模式完全无关。从数学上讲,这种从一种活动模式到第二种不相关的活动模式的突然转变称为分叉。我们提出,PGO 活动引起的神经元分叉可能在认知上表现为梦境情节的奇异不连续性。我们认为这些建议是尝试建立梦境认知与 REM 睡眠神经生理学之间关系的初步尝试。这种梦境奇异的神经生理学模型也可能有助于理解 REM 睡眠对大脑皮层发育和经验可塑性的贡献。

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