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Biomedical subjects

A Guerrien

Publications and source records attributed to A Guerrien.

5 recordsLinked to original sources

Sleep, brain activation and cognition.

Some data have shown the presence of time-of-day effects in learning processes. We explore here whether the same phenomenon occurs during the night and how it relates to REM sleep. In an initial approach to the question, this paper points out the relationships between: 1) REM sleep and brain activation, and 2) REM sleep and information processing. The data are discussed in terms of a REM sleep implication on information processing and we examine the possibility of modifying this processing by acting on REM sleep.

Animals↗

Enhancement of memory by auditory stimulation during postlearning REM sleep in humans.

REM sleep involvement in memory processes was demonstrated in animals and humans: 1) REM sleep deprivation impairs the memory fixation, 2) learning sessions are followed by modifications of REM sleep characteristics. Moreover, sleep patterns can be modified by applying auditory stimulations during REM sleep. We show that REM actual auditory stimulations significantly improve the retention of a Morse code learning task. These results are discussed in terms of brain activation.

Acoustic Stimulation↗

REM sleep modifications following a Morse code learning session in humans.

Various experimental data indicate that rapid eye movement (REM) sleep is involved in learning processes. In animals, any complex task in a learning environment leads to an increase of the consecutive total REM sleep time, especially just before learning completion. In humans, the oculomotor activity during REM sleep seems to constitute an interesting marker of learning performance. In this work, we focus on the qualitative analysis of REM sleep characteristics after a Morse code learning session. Eight male subjects were polygraphically recorded during three consecutive nights. A computer aided teaching session was performed just before bedrest onset of the experimental night. The learning performance (percentage of saving) was checked on awakening. The Morse code learning led to some modifications in REM sleep components, particularly increases of REM sleep time and number of REM episodes. We did not observe any significant modification in the total number of REMs in the experimental night. However, the correlative analysis between learning performance and sleep parameters indicates a superior r for the oculomotor activity than for the tonic components. This is consistent with the information processing hypothesis in which the temporal distribution of REMs reflects the subject's ability to increase the signal-noise ratio from environmental information intake.

Adolescent↗

[Memory facilitation by auditory stimulation during paradoxal sleep in man].

REM sleep involvement in memory processes was demonstrated in animals and humans. Learning sessions are followed by modifications of REM sleep patterns. Furthermore, one can modify sleep patterns by applying auditory stimulation during REM sleep oculomotor activity. We show that such a procedure facilitates the retention of Morse code learning.

Acoustic Stimulation↗

[Paradoxical sleep and memory processes in humans].

The beneficial effect of sleep on memory has often been reported. Moreover, REM sleep seems to be the best candidate for explaining this beneficial effect. Our aim in this paper is to point out the human literature concerning relationships between REM sleep and memory processes. The studies may be separated into three categories, on the basis of their methodological choice: effect of REM sleep deprivation on subsequent performance, effect of learning on subsequent REM sleep characteristics, enhancement of learning by acting on REM sleep. The data strengthen the assumption that REM sleep affects information processing. This topic "REM sleep and memory" is considered with respect to the chronopsychology of memory processes.

Humans↗