International Journal of Technology and Emerging Research
DOI: 10.64823/ijter.2604037
The modern healthcare landscape necessitates a 24-hour service model, forcing nursing professionals and interns into rotating shift schedules that inherently conflict with human biological rhythms. The human body is regulated by a circadian timing system that promotes wakefulness during daylight and transitions to a physiological "rest" state during the night [1]. When nursing interns work night shifts, they encounter the "circadian trough"—typically between 2:00 AM and 5:00 AM—where core body temperature and cognitive alertness reach their lowest points [2, 3].
Recent literature emphasizes that the impact of this disruption is not merely subjective fatigue but a measurable decline in neurobehavioral function. Sleep-deprived clinicians demonstrate impaired executive function, reduced short-term memory, and a significant increase in "micro-sleeps"—unintentional lapses in attention lasting several seconds [4, 5]. For nursing interns, who are in a critical stage of clinical skill acquisition, this cognitive impairment poses a dual threat: it compromises their pedagogical development and increases the risk of clinical errors, such as medication miscalculations or needle-stick injuries [1, 6].
To mitigate these risks, the concept of the "power nap" has emerged as a high-utility countermeasure. Unlike longer sleep periods that can lead to sleep inertia—a state of grogginess and disorientation upon waking—a brief, scheduled nap of 10 to 20 minutes is designed to provide restorative benefits while remaining within the lighter stages of non-rapid eye movement (NREM) sleep [7, 8]. Studies published after 2022 suggest that strategic napping is superior to high-dose caffeine consumption, as it provides a natural reduction in homeostatic sleep pressure without the subsequent "caffeine crash" [9, 10].
Despite international recognition of napping as a safety intervention, it remains underutilized in Indian clinical settings due to institutional stigmas and a lack of dedicated "nap spaces." This study utilizes the Psychomotor Vigilance Test (PVT), an objective gold-standard metric, to quantify the impact of a 10–15 minute power nap on the alertness levels of nursing interns at Sharda University, providing a data-driven rationale for policy reform in nursing education and hospital management [11, 12].
Research Design and Setting A quantitative research approach utilizing a quasi-experimental (one-group pre-test post-test) design was employed for this study. The study was conducted at Sharda Hospital, Greater Noida, Uttar Pradesh, a tertiary care hospital associated with Sharda University. This setting provided natural conditions of night work where interns experience fatigue and sleeplessness.
Population and Sample The target population comprised nursing interns working night shifts at Sharda Hospital. A sample of 70 nursing interns was selected using a purposive sampling technique.
Data Collection Tools
Data were collected using two primary instruments:
Data Collection Procedure Data collection spanned two weeks. The procedure involved three phases:
Ethical Considerations Ethical clearance was obtained from the Institutional Ethical Committee. Written informed consent was secured from all participants, ensuring privacy, confidentiality, and the right to withdraw at any stage.
Statistical Methods
Data analysis was performed using the Statistical Package for the Social Sciences (SPSS, version 25). Descriptive statistics (frequencies, percentages, means, and standard deviations) were utilized to summarize demographic variables and PVT scores. Inferential statistics, specifically the paired sample t-test, were applied to compare pre-test and post-test PVT scores to determine the statistical significance of the intervention at a 0.05 level of significance.
RESULT
Demographic Profile The demographic analysis of the 70 participants revealed that the majority were aged between 23-25 years (82.9%) and were female (70.0%). Almost all participants were single (98.6%) and belonged to nuclear families (81.4%). Workload distribution indicated that 41.4% were posted in critical areas (Emergency/ICU/OT), followed by Medical Wards (34.3%). A significant proportion of the sample (82.9%) reported working more than 7 night shifts in a month. Prior to starting their shifts, 61.4% consumed tea as a stimulant. Following a night shift, 48.6% of interns reported sleeping between 6 to 8 hours.
Impact of Power Nap on Alertness The primary outcome was measured by changes in PVT reaction times, where a lower reaction time denotes higher alertness.
The core finding of this study is the dramatic and statistically significant reduction in reaction time following a 10–15 minute power nap. The pre-intervention mean reaction time of 645.73 ms decreased to 327.30 ms post-intervention (p < 0.001), representing a near-doubling of alertness levels. This objective improvement via the Psychomotor Vigilance Test (PVT) underscores that brief periods of sleep can effectively "reset" the brain’s ability to process visual stimuli and maintain sustained attention during the circadian trough [8, 11].
These results align with recent global findings that short naps are a potent physiological tool for shift workers. Research by Ye et al. (2024) and others suggests that napping rapidly reduces the accumulation of adenosine in the basal forebrain, thereby restoring the speed of neurobehavioral responses [1, 13]. Our study successfully avoided the pitfall of sleep inertia by capping the nap duration at 15 minutes, ensuring that participants did not enter Stage 3 (Deep/Slow Wave) sleep. This allowed interns to return to their high-stakes clinical duties in the ICU and Emergency departments with immediate cognitive clarity [7, 14].
The demographic data in this study revealed a high frequency of night shifts (>7 per month for 82.9% of participants), which suggests that many interns are operating under conditions of chronic sleep restriction rather than just acute overnight fatigue [5]. In such cases, the power nap acts as a critical "safety valve." While 61.4% of our sample reported using tea as a stimulant, the significant reaction time improvement post-nap suggests that pharmacological stimulants alone may be insufficient to overcome the physiological drive for sleep during a 12-hour shift [10, 15].
The clinical implications of these findings are profound. If a 10-minute intervention can halve reaction times, it follows that scheduled napping could significantly reduce the incidence of fatigue-related patient safety incidents [12, 16]. However, the success of such an intervention requires institutional support, including the provision of quiet, dark environments and a shift in nursing culture that views napping as a professional responsibility toward safety rather than an act of negligence.
This research offers compelling evidence that a 10-minute power nap significantly enhances alertness and neurobehavioral performance in nursing interns working night shifts. Given the rigorous demands of clinical practice and the high frequency of night duties required of trainees, mitigating fatigue is a critical patient safety imperative. Power naps represent an evidence-based, non-pharmacological, and highly feasible solution to bridge the gap between human physiological limits and continuous healthcare delivery. Hospital administrators and policymakers are strongly encouraged to destigmatize workplace rest and formally integrate scheduled nap breaks into night-shift protocols to ensure a resilient workforce and secure patient outcomes.