Key result
Chewing did not improve alertness or cognitive performance compared with placebo during sleep deprivation, whereas 200 mg of caffeine improved speed, accuracy, and alertness.
Why the study?
Does chewing improve alertness and cognitive performance compared to placebo or caffeine in sleep-deprived adults?
RCT (n=14)
randomized, counterbalanced
Does chewing improve alertness and cognitive performance compared to placebo or caffeine in sleep-deprived adults?
Chewing does not mitigate the cognitive deficits of sleep deprivation, whereas caffeine remains an effective countermeasure.
Chewing offers no overnight alertness benefit versus placebo; leaves open efficacy in larger shift-work trials.
Chewing has been shown to alleviate feelings of sleepiness and improve cognitive performance during the day. This study investigated the effect of chewing on alertness and cognitive performance across one night without sleep as well as the possible mediating role of cardiac autonomic activity. Fourteen adults participated in a randomized, counterbalanced protocol employing a chewing, placebo and caffeine condition. Participants completed tasks assessing psychomotor vigilance, tracking, grammatical reasoning, alertness and sleepiness each hour across the night. All participants received either placebo or caffeine (200 mg), while the chewing condition also chewed on a tasteless and odorless substance for 15 min each hour. Heart rate (HR), root mean square of the successive differences in R-R intervals on the ECG (RMSSD), and preejection period (PEP) were simultaneously recorded. Alertness and cognitive performance amongst the chewing condition did not differ or were in fact worse when compared with placebo. Similarly, measures of HR and RMSSD remained the same between these two conditions; however, PEP was reduced in the later part of the night in the chewing condition compared with a relative increase for placebo. Caffeine led to improved speed and accuracy on cognitive tasks and increased alertness when compared with chewing. Relative increases in RMSSD and reductions in HR were demonstrated following caffeine; however, no change in PEP was seen. Strong associations between cardiac parasympathetic activity and complex cognitive tasks, as well as between subjective alertness and simpler cognitive tasks, suggest a differential process mediating complex versus simple cognitive performance during sleep deprivation.
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Kohler et al. (2006) conducted an RCT in Sleep deprivation (n=14). Chewing and Caffeine vs. Placebo was evaluated on Alertness, cognitive performance, and cardiac autonomic activity. Chewing did not improve alertness or cognitive performance compared with placebo during sleep deprivation, whereas 200 mg of caffeine improved speed, accuracy, and alertness.
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