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Effect of Naps on Decision Making of Residents.

Effect of Programmed Naps on Decision Making of Residents During Working Hours.

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03225391
Enrollment
27
Registered
2017-07-21
Start date
2015-06-10
Completion date
2019-12-10
Last updated
2020-02-19

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Decision Making, Internship and Residency, Sleep

Keywords

Residents, Naps, decision making

Brief summary

Sleep deprivation produces changes including alteration of mood, irritability, fatigue, less focus and disorientation, also perceptive distortions, visual hallucinations and considering tasks harder and less pleasant. In resident physicians, these alterations have been shown to affect their work performance. Naps have proved to improve arousal and attention, alertness and performance. Those longer than 90 minutes promote a learning process similar to that occurring in REM sleep. Therefore a nap schedule could improve the decision making of residents during their working hours.

Detailed description

Sleep deprivation produces changes including alteration of mood, irritability, fatigue, less focus and disorientation, also perceptive distortions, visual hallucinations and considering tasks harder and less pleasant. Extenuating working hours provoke sleep deprivation, which deteriorates work performance, produces mood disorders and increase chances of error. In a survey performed to 3600 resident physicians in the USA it was observed that working more than 24 continuous hours was related with a higher risk of traffic accidents, as well as a higher tendency towards medical mistakes due to overstress, the most common being a diminished capability of performing a previously known procedure; also there were difficulties to solve problems generated by coworkers or relatives. Other study determinated that after a night shift the levels of daytime sleepiness were similar or higher than those of patients with narcolepsy or sleep apnea. The lack of sleep affects the performance of tasks, producing alterations similar to those in alcoholic intoxication, with a decline in visual attention, reaction speed, visual memory and creative thinking. Even though the effects of sleep deprivation in resident have been difficult to quantify due to confounders, there are indicators as decline in performance, which seems higher in less experienced physicians, with a higher alteration in reasoning and reaction time. It has been found in physicians in training (anesthesiology residents) that mistakes in administration of epidural anesthesia are more frequent after sleep deprivation; and a resident performing monitoring tasks after a night shift was more liable to mistakes that after a resting night, being also less likely to recognize arrhythmias in an electrocardiogram. Sleep deprivation affects coordination and skill, as observed in laparoscopist surgeons who took more time to complete a procedure after sleep deprivation than those who had rested. This results made the ACGME to establish a limitation in working hours during the residence. Naps from 30 minutes to 4 hours improve alertness and performance. Studies comparing naps and caffeine have shown that naps not only improve arousal and attention but also helps to consolidate memory in those longer than 90 minutes. Furthermore, naps with slow wave and REM sleep are partially equivalent to a night's sleep, restoring the damage from baseline. It has been proven that naps promote a learning process similar to that occurring in a complete night sleep, which correlates with phase 2 of REM sleep. Therefore a nap schedule could improve the decision making of residents during their working hours.

Interventions

BEHAVIORALnap from 0:00 to 3:00 hours

A nap from 0:00 to 3:00 hours during a night shift.

BEHAVIORALnap from 3:00 to 6:00 hours

A nap from 3:00 to 6:00 hours during a night shift.

Sponsors

Instituto Nacional de Enfermedades Respiratorias
Lead SponsorOTHER_GOV

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
SINGLE (Investigator)

Masking description

At the moment of running the Iowa Gambling Task and the Psychomotor Visual Test the investigator does not know the schedule of the nap.

Eligibility

Sex/Gender
ALL
Age
23 Years to 32 Years
Healthy volunteers
No

Inclusion criteria

* Resident physician cursing the first to third year in the pulmonology or pediatric pulmonology residency of the INER. * Accepts to participate in the study signing the informed consent.

Exclusion criteria

* Chronic-degenerative or psychiatric disease. * Sleep disorders diagnosed before recruiting. Elimination Criteria: * Not performing all psychometric tests. * Lack of data in questionnaire.

Design outcomes

Primary

MeasureTime frameDescription
Decision makingAt 12:00 on the day of the nap.Net total and demographically corrected percentile in the Iowa Gambling Task.

Secondary

MeasureTime frameDescription
AlertnessAt 12:00 hours on the day of the nap.Mean reaction time in the psychomotor vigilance test.
Sleep quality3 hours.Sleep efficiency as assessed by actigraphy
VigilanceAt 12:00 hours on the day of the nap.Slope of the reaction time in the psychomotor vigilance test.
Energy Expenditure22 hours around the nap.Total activity kcal as calculated via algorithm by actigraphy.
Activity22 hours around the nap.Percentages of sedentary, light, vigorous and very vigorous activity as calculated via algorithm by actigraphy.

Countries

Mexico

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026