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Biomedical subjects

W Fishbein

Publications and source records attributed to W Fishbein.

14 recordsLinked to original sources

Sex differences in paradoxical sleep: influences of estrus cycle and ovariectomy.

Previously, we reported that paradoxical sleep (PS) is sexually dimorphic in mice and rats. Since some early studies indicate that PS is suppressed during proestrus night, it is important to know whether the estrus cycle and accompanying circulating ovarian hormones could explain the sexual dimorphism of PS. To examine this, sleep patterns of male rats were compared with those of normal cycling female rats and ovariectomized females in a 12:12 h light/dark cycle. Slow wave sleep and total sleep time are indistinguishable between the males, cycling females and ovariectomized females. However, normal males display significantly more PS than cycling females during both daytime and nighttime (average of all estrus stages). On the other hand, while ovariectomy has no visible effect on daytime sleep--the sexual dimorphism of PS is unchanged by ovariectomy--during nighttime, ovariectomy produces a selective increase of PS, eliminating the sex difference during the night. In sum, normal cycling females show no change in daytime sleep patterns across the estrus cycle, but have significantly less PS during proestrus nights than during metestrus and diestrus nights. The results indicate that the sex difference in nighttime PS is due to the suppression of PS by ovarian hormones during proestrus and, to a less extent, estrus nights. The sex difference in daytime PS, on the other hand, appears to be independent of circulating ovarian hormones.

Animals↗

Continuous pontine cholinergic microinfusion via mini-pump induces sustained alterations in rapid eye movement (REM) sleep.

Although there is much evidence that single microinjections of cholinomimetics into the pontine reticular formation (PRF) evokes rapid eye movement sleep (REMS), no study has yet demonstrated whether protracted manipulations of PRF cholinergic levels can produce sustained alteration of this sleep state. In this study, in rats, an indwelling, chronically implanted osmotic mini-pump was used to infuse carbachol, scopolamine, or saline solutions into various brainstem regions or the fourth ventricle for a period of five consecutive days. Throughout the period of pump operation, carbachol infusions chiefly in the PRF produced sustained REMS augmentation primarily during the night cycle, whereas scopolamine produced a sustained decrease in REMS primarily during the day cycle. The findings provide considerable support for a PRF cholinergic hypothesis of REMS generation and regulation and suggest that the alterations in REMS result from a muscarinic receptor mediated change in PRF neuronal activity.

Animals↗

Retrograde amnesia: electroconvulsive shock effects after termination of rapid eye movement sleep deprivation.

Mice that were deprived of rapid eye movement sleep for 2 days immediately after one-trial training in an inhibitory avoidance task and were given an electroconvulsive shock after deprivation displayed retrograde amnesia on a retention test given 24 hours later. Electroconvulsive shock produced no amnesia in comparable groups of animals that were not deprived of rapid eye movement sleep.

Amnesia↗

Paradoxical sleep and memory (II): sleep circadian rhythmicity following enriched and impoverished environmental rearing.

Sleep cycle circadian rhythmicity following either enriched or impoverished environmental rearing is examined in this study. Mice are reared in either super-enriched (SEE), regular-enriched (REE), social control (SC), or impoverished (IE) environments for 30 days. SEE and REE groups show a general increase in total slow-wave sleep (SWS) in the 24 hr cycle but the number of SWS episodes, mean duration of SWS episodes, and percent SWS of total sleep time (TST) is not significantly different from the SC groups for the Day cycle (0700--1900). Enriched rearing produces a selective and significant increase in the number of PS (Paradoxical sleep or REM sleep) episodes, mean duration of PS episodes, total amount of PS time, and percent PS/TST throughout the 24 hr cycle. IE reared mice also show a general increase in SWS primarily during the Day cycle but with rearing experience plays an important role in the developing of the basic rhythmicity during the sleep (PS-SWS)-wakefulness cycle, and (2) provide further support for our hypothesis that PS occurring over a prolonged time period is a requisite neurobiological mechanism for the processing, maintenance, and storage of long-term memory.

Animals↗

Paradoxical sleep and memory (I): Selective alterations following enriched and impoverished environmental rearing.

Mice were reared in either enriched (EE), social control, (SE), or impoverished (IE) environments for 30 days. Environmental enrichment results in a significant and selective increase in paradoxical sleep (PS, or REM sleep) and also enhances recall of a multiple-trial, brightness discrimination task 28 days after training. Conversely, impoverished (IE) reared mice exhibit a decrease in PS and impaired task performance relative to socially housed (SE) controls. These results support the hypothesis that PS plays an integral role in the maintenance and stability of long-term memory.

Animals↗