Abstract

It is known that insufficient sleep or diurnal rhythm disturbances of sleep and wakefulness exert a detrimental effect on cognitive functions. It was thought for a long period that memory consolidation is the most vulnerable link, i.e., information transfer from short-term/working memory to long-term memory. However, there is a progressive number of studies indicating that the most negative consequences of sleep loss are observed in working memory. In our study, we undertook an effort to assess possible disturbances in working memory and long-term memory following sleep loss impact with different protocols in acute and chronic experiment in rats. Sleep in Wistar rats was deprived/restricted by swinging platform technique according to the following protocols: 1 – total sleep deprivation for 18 h; 2 – partial sleep restriction for 24 h (3 h of sleep deprivation alternated with 1 h of sleep opportunity – totally 18 h of sleep deprivation); 3 – chronic partial sleep restriction (conditions 2 for five consistent days). Total sleep deprivation in Y-maze test was shown to result in a significant decrease in spontaneous alternations of maze arms that indicates working memory impairment. This impact in Barnes test did not exert an effect on long-term memory – time spent for seeking a shelter did not change in this task. Acute and chronic sleep restriction induced no changes in working memory and long-term memory. The results obtained allow us to come to conclusion that working memory (in contrast to long-term memory) is a vulnerable component of cognitive function under total sleep deprivation conditions. This negative effect was abolished if periods of sleep deprivation alternated with short periods of sleep opportunities that indicate protective significance of short sleep periods for cognitive functions during sleep deficit. Hence, short-term sleep is helpful for cognitive health and protects working memory, whereas continuous long-term wakefulness impairs it.

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