Physical Activity and Executive Functions in Adolescents: The Mediating Role of Sleepiness
Abstract
:1. Introduction
2. Materials and Methods
2.1. Participants and Study Design
2.2. Procedures
2.3. Measurements
2.4. Statistical Analysis
3. Results
3.1. Descriptive Results
3.2. Associations between PA, Sleepiness, and Working Memory
3.3. Associations between PA, Sleepiness, and Inhibition
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Wade, L.; Leahy, A.; Lubans, D.R.; Smith, J.J.; Duncan, M.J. A systematic review of cognitive assessment in physical activity research involving children and adolescents. J. Sci. Med. Sport 2020, 23, 740–745. [Google Scholar] [CrossRef] [PubMed]
- Padulo, J.; Bragazzi, N.; de Giorgio, A.; Grgantov, Z.; Prato, S.; Ardigò, L.P. The Effect of Physical Activity on Cognitive Performance in an Italian Elementary School: Insights From a Pilot Study Using Structural Equation Modeling. Front. Physiol. 2019, 10, 202. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nader, P.R.; Bradley, R.H.; Houts, R.; McRitchie, S.L.; O’Brien, M. Moderate-to-Vigorous Physical Activity From Ages 9 to 15 Years. JAMA 2008, 300, 295–305. [Google Scholar] [CrossRef] [PubMed]
- Murman, D.L. The Impact of Age on Cognition. Semin. Hear. 2015, 36, 111–121. [Google Scholar] [CrossRef] [PubMed]
- Ruiz, J.R.; Ortega, F.B.; Castillo, R.; Martín-Matillas, M.; Kwak, L.; Vicente-Rodríguez, G.; Noriega, J.; Tercedor, P.; Sjöström, M.; Moreno, L.A. Physical Activity, Fitness, Weight Status, and Cognitive Performance in Adolescents. J. Pediatr. 2010, 157, e911–e915. [Google Scholar] [CrossRef]
- Esteban-Cornejo, I.; Tejero-Gonzalez, C.M.; Sallis, J.F.; Veiga, O.L. Physical activity and cognition in adolescents: A systematic review. J. Sci. Med. Sport 2015, 18, 534–539. [Google Scholar] [CrossRef]
- Haapala, E.A.; Väistö, J.; Lintu, N.; Westgate, K.; Ekelund, U.; Poikkeus, A.-M.; Brage, S.; Lakka, T.A. Physical activity and sedentary time in relation to academic achievement in children. J. Sci. Med. Sport 2016, 20, 583–589. [Google Scholar] [CrossRef] [Green Version]
- Maher, C.; Lewis, L.; Katzmarzyk, P.T.; Dumuid, D.; Cassidy, L.; Olds, T. The associations between physical activity, sedentary behaviour and academic performance. J. Sci. Med. Sport 2016, 19, 1004–1009. [Google Scholar] [CrossRef]
- Kline, C.E.; Irish, L.A.; Krafty, R.T.; Sternfeld, B.; Kravitz, H.M.; Buysse, D.J.; Bromberger, J.T.; Dugan, S.A.; Hall, M.H. Consistently High Sports/Exercise Activity Is Associated with Better Sleep Quality, Continuity and Depth in Midlife Women: The SWAN Sleep Study. Sleep 2013, 36, 1279–1288. [Google Scholar] [CrossRef]
- Youngstedt, S.D. Effects of Exercise on Sleep. Clin. Sports Med. 2005, 24, 355–365. [Google Scholar] [CrossRef]
- Kato, K.; Iwamoto, K.; Kawano, N.; Noda, Y.; Ozaki, N.; Noda, A. Differential effects of physical activity and sleep duration on cognitive function in young adults. J. Sport Health Sci. 2018, 7, 227–236. [Google Scholar] [CrossRef]
- Lang, C.; Brand, S.; Feldmeth, A.K.; Holsboer-Trachsler, E.; Pühse, U.; Gerber, M. Increased self-reported and objectively assessed physical activity predict sleep quality among adolescents. Physiol. Behav. 2013, 120, 46–53. [Google Scholar] [CrossRef] [PubMed]
- Van Dyk, T.R.; Krietsch, K.N.; Saelens, B.E.; Whitacre, C.; McAlister, S.; Beebe, D.W. Inducing more sleep on school nights reduces sedentary behavior without affecting physical activity in short-sleeping adolescents. Sleep Med. 2018, 47, 7–10. [Google Scholar] [CrossRef] [PubMed]
- Peach, H.; Gaultney, J.F.; Reeve, C.L. Sleep Characteristics, Body Mass Index, and Risk for Hypertension in Young Adolescents. J. Youth Adolesc. 2015, 44, 271–284. [Google Scholar] [CrossRef] [PubMed]
- Short, M.A.; Booth, S.A.; Omar, O.; Ostlundh, L.; Arora, T. The relationship between sleep duration and mood in adolescents: A systematic review and meta-analysis. Sleep Med. Rev. 2020, 52, 101311. [Google Scholar] [CrossRef]
- Dutil, C.; Walsh, J.J.; Featherstone, R.B.; Gunnell, K.E.; Tremblay, M.S.; Gruber, R.; Weiss, S.K.; Cote, K.A.; Sampson, M.; Chaput, J.-P. Influence of sleep on developing brain functions and structures in children and adolescents: A systematic review. Sleep Med. Rev. 2018, 42, 184–201. [Google Scholar] [CrossRef] [PubMed]
- Bryant, N.B.; Gómez, R.L. The teen sleep loss epidemic: What can be done? Transl. Issues Psychol. Sci. 2015, 1, 116–125. [Google Scholar] [CrossRef] [Green Version]
- Lo, J.C.; Ong, J.L.; Leong, R.L.; Gooley, J.J.; Chee, M.W. Cognitive Performance, Sleepiness, and Mood in Partially Sleep Deprived Adolescents: The Need for Sleep Study. Sleep 2016, 39, 687–698. [Google Scholar] [CrossRef] [Green Version]
- Young, T.B. Epidemiology of daytime sleepiness: Definitions, symptomatology, and prevalence. J. Clin. Psychiatry 2004, 65 (Suppl. 16), 12–16. [Google Scholar]
- Nasirudeen, A.M.A.; Adeline, L.L.C.; Josephine, K.W.N.; Seng, L.L.; Wenjie, L. Impact of social media usage on daytime sleepiness: A study in a sample of tertiary students in Singapore. Digit. Health 2017, 3, 2055207617699766. [Google Scholar] [CrossRef]
- Sonka, K.; Susta, M. Diagnosis and management of central hypersomnias. Ther. Adv. Neurol. Disord. 2012, 5, 297–305. [Google Scholar] [CrossRef] [PubMed]
- Wong, M.L.; Lau, E.Y.Y.; Wan, J.H.Y.; Cheung, S.F.; Hui, C.H.; Mok, D.S.Y. The interplay between sleep and mood in predicting academic functioning, physical health and psychological health: A longitudinal study. J. Psychosom. Res. 2013, 74, 271–277. [Google Scholar] [CrossRef] [PubMed]
- Liu, Y.; Zhang, J.; Li, S.X.; Chan, N.Y.; Yu, M.W.M.; Lam, S.P.; Chan, J.W.Y.; Li, A.M.; Wing, Y.K. Excessive daytime sleepiness among children and adolescents: Prevalence, correlates, and pubertal effects. Sleep Med. 2019, 53, 1–8. [Google Scholar] [CrossRef] [PubMed]
- Anderson, B.; Storfer-Isser, A.; Taylor, H.G.; Rosen, C.L.; Redline, S. Associations of Executive Function With Sleepiness and Sleep Duration in Adolescents. Pediatrics 2009, 123, e701–e707. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Fallone, G.; Owens, J.A.; Deanec, J. Sleepiness in children and adolescents: Clinical implications. Sleep Med. Rev. 2002, 6, 287–306. [Google Scholar] [CrossRef] [PubMed]
- Beebe, D.W. Cognitive, Behavioral, and Functional Consequences of Inadequate Sleep in Children and Adolescents. Pediatr. Clin. North Am. 2011, 58, 649–665. [Google Scholar] [CrossRef] [Green Version]
- Dewald, J.F.; Meijer, A.M.; Oort, F.J.; Kerkhof, G.A.; Bögels, S.M. The influence of sleep quality, sleep duration and sleepiness on school performance in children and adolescents: A meta-analytic review. Sleep Med. Rev. 2010, 14, 179–189. [Google Scholar] [CrossRef]
- Malheiros, L.E.; da Costa, B.G.; Lopes, M.V.; Chaput, J.-P.; Silva, K.S. Association between physical activity, screen time activities, diet patterns and daytime sleepiness in a sample of Brazilian adolescents. Sleep Med. 2021, 78, 1–6. [Google Scholar] [CrossRef]
- Isa, T.; Sugimoto, T.; Murata, S.; Tsuboi, Y.; Ebina, A.; Kondo, Y.; Torizawa, K.; Okumura, M.; Shigemoto, C.; Matsuda, N.; et al. Lower physical activity is associated with daytime sleepiness in children aged 9–12 years. J. Child Health Care 2019, 23, 415–424. [Google Scholar] [CrossRef]
- Ramsbottom, R.; Brewer, J.; Williams, C. A progressive shuttle run test to estimate maximal oxygen uptake. Br. J. Sports Med. 1988, 22, 141–144. [Google Scholar] [CrossRef] [Green Version]
- Chandler, J.L.; Brazendale, K.; Beets, M.W.; Mealing, B.A. Classification of physical activity intensities using a wrist-worn accelerometer in 8-12-year-old children. Pediatr. Obes. 2016, 11, 120–127. [Google Scholar] [CrossRef] [PubMed]
- Spilsbury, J.C.; Drotar, D.; Rosen, C.L.; Redline, S. The Cleveland adolescent sleepiness questionnaire: A new measure to assess excessive daytime sleepiness in adolescents. J. Clin. Sleep Med. 2007, 3, 603–612. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Yang, Y.-T.; Chang, H.-Y.; Hsu, C.-Y.; Zeitzer, J.M. Translation and Validation of a Chinese Version of the Cleveland Adolescent Sleepiness Questionnaire. Nat. Sci. Sleep 2021, 13, 695–702. [Google Scholar] [CrossRef]
- Zhu, Y.; Sun, F.; Chiu, M.M.; Siu, A.Y.-S. Effects of High-Intensity Interval Exercise and Moderate-Intensity Continuous Exercise on Executive Function of Healthy Young Males. Physiol. Behav. 2021, 239, 113505. [Google Scholar] [CrossRef]
- Zhu, Y.; Sun, F.; Chow, G.C.; Tao, S.; Cooper, S.B.; Zhang, B.; Wong, T.W. Associations of Device-Measured Physical Activity, Sedentary Behavior, and Executive Function in Preadolescents: A Latent Profile Approach. Pediatr. Exerc. Sci. 2022. [Google Scholar] [CrossRef] [PubMed]
- Baron, R.M.; Kenny, D.A. The moderator–mediator variable distinction in social psychological research: Conceptual, strategic, and statistical considerations. J. Pers. Soc. Psychol. 1986, 51, 1173–1182. [Google Scholar] [CrossRef]
- Preacher, K.J.; Hayes, A.F. SPSS and SAS procedures for estimating indirect effects in simple mediation models. Behav. Res. Methods Instrum. Comput. 2004, 36, 717–731. [Google Scholar] [CrossRef] [Green Version]
- Haverkamp, B.F.; Wiersma, R.; Vertessen, K.; van Ewijk, H.; Oosterlaan, J.; Hartman, E. Effects of physical activity interventions on cognitive outcomes and academic performance in adolescents and young adults: A meta-analysis. J. Sports Sci. 2020, 38, 2637–2660. [Google Scholar] [CrossRef] [PubMed]
- Donnelly, J.E.; Hillman, C.H.; Castelli, D.; Etnier, J.L.; Lee, S.; Tomporowski, P.; Lambourne, K.; Szabo-Reed, A.N. Physical Activity, Fitness, Cognitive Function, and Academic Achievement in Children. Med. Sci. Sports Exerc. 2016, 48, 1197–1222. [Google Scholar] [CrossRef] [Green Version]
- Lebel, C.; Walker, L.; Leemans, A.; Phillips, L.; Beaulieu, C. Microstructural maturation of the human brain from childhood to adulthood. NeuroImage 2008, 40, 1044–1055. [Google Scholar] [CrossRef]
- Li, J.W.; O'Connor, H.; O’Dwyer, N.; Orr, R. The effect of acute and chronic exercise on cognitive function and academic performance in adolescents: A systematic review. J. Sci. Med. Sport 2017, 20, 841–848. [Google Scholar] [CrossRef] [PubMed]
- Cotman, C.W.; Berchtold, N.C.; Christie, L.-A. Exercise builds brain health: Key roles of growth factor cascades and inflammation. Trends Neurosci. 2007, 30, 464–472. [Google Scholar] [CrossRef] [PubMed]
- Tambalis, K.D.; Panagiotakos, D.B.; Psarra, G.; Sidossis, L.S. Concomitant associations between lifestyle character-istics and physical activity status in children and adolescents. J. Res. Health Sci. 2019, 19, e00439. [Google Scholar]
- Jalali-Farahani, S.; Amiri, P.; Chin, Y.S. Are physical activity, sedentary behaviors and sleep duration associated with body mass index-for-age and health-related quality of life among high school boys and girls? Health Qual. Life Outcomes 2016, 14, 1–9. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Felez-Nobrega, M.; Haro, J.M.; Vancampfort, D.; Koyanagi, A. Sex difference in the association between physical activity and suicide attempts among adolescents from 48 countries: A global perspective. J. Affect. Disord. 2020, 266, 311–318. [Google Scholar] [CrossRef] [PubMed]
- Andrieieva, O.; Kashuba, V.; Carp, I.; Blystiv, T.; Palchuk, M.; Kovalova, N.; Khrypko, I. Assessment of emotional state and mental activity of 15-16 year-old boys and girls who had a low level of physical activity. J. Phys. Educ. Sport 2019, 19, 1022–1029. [Google Scholar] [CrossRef]
- Wilckens, K.A.; Erickson, K.I.; Wheeler, M.E. Physical Activity and Cognition: A Mediating Role of Efficient Sleep. Behav. Sleep Med. 2018, 16, 569–586. [Google Scholar] [CrossRef] [Green Version]
- Khan, M.K.A.; Chu, Y.L.; Kirk, S.; Veugelers, P.J. Are sleep duration and sleep quality associated with diet quality, physical activity, and body weight status? A population-based study of Canadian children. Can. J. Public Health 2015, 106, e277–e282. [Google Scholar] [CrossRef]
- Kawatani, J.; Mizuno, K.; Shiraishi, S.; Takao, M.; Joudoi, T.; Fukuda, S.; Watanabe, Y.; Tomoda, A. Cognitive dysfunction and mental fatigue in childhood chronic fatigue syndrome—A 6-month follow-up study. Brain Dev. 2011, 33, 832–841. [Google Scholar] [CrossRef]
- Sulheim, D.; Fagermoen, E.; Sivertsen, S.; Winger, A.; Wyller, V.B.; Øie, M.G. Cognitive dysfunction in adolescents with chronic fatigue: A cross-sectional study. Arch. Dis. Child. 2015, 100, 838–844. [Google Scholar] [CrossRef]
Variables | Overall | Boys | Girls | p Value | Secondary School | Primary School | p Value |
---|---|---|---|---|---|---|---|
Age | 12.47 ± 1.76 | 12.32 ± 1.76 | 12.62 ± 1.76 | 0.213 | 14.11 ± 0.68 | 10.80 ± 0.49 | <0.001 *** |
Height (cm) | 154.72 ± 11.46 | 155.47 ± 14.13 | 153.98 ± 7.94 | 0.344 | 163.48 ± 7.20 | 145.80 ± 7.36 | <0.001 *** |
Weight (kg) | 45.92 ± 12.8 | 45.75 ± 14.02 | 46.09 ± 11.51 | 0.874 | 54.06 ± 10.63 | 37.63 ± 8.93 | <0.001 *** |
VO2max (ml/kg/min) | 42.49 ± 9.70 | 46.37 ±10.70 | 38.60 ± 6.64 | <0.001 *** | 46.43 ± 10.18 | 38.46 ± 7.27 | <0.001 *** |
Body fat (%) | 21.35 ± 6.89 | 19.08 ± 5.79 | 23.62 ± 7.18 | <0.001 *** | 21.97 ± 7.08 | 20.72 ± 6.67 | 0.109 |
Accelerometer (Boy n = 87, Girl n = 96) (7th grade, n = 99; 5th grade, n = 84) | |||||||
Daily percentage of sedentary behavior a | 80.85 ± 7.06 | 79.88 ± 8.18 | 81.72 ± 5.77 | 0.083 | 84.97 ± 4.42 | 75.99 ± 6.49 | <0.001 *** |
Daily percentage of light PA a | 17.70 ± 6.23 | 18.41 ± 7.17 | 17.06 ± 5.20 | 0.152 | 14.12 ± 4.03 | 21.93 ± 5.70 | <0.001 *** |
Daily percentage of MVPA a | 1.45 ± 1.18 | 1.71 ± 1.43 | 1.21 ± 0.83 | 0.005 ** | 0.91 ± 0.69 | 2.08 ± 1.32 | <0.001 *** |
CASQ (boys n = 102, girls n = 104) (7th grade, n = 102; 5th grade, n = 104) | |||||||
CASQ total score | 36.57 ± 8.38 | 36.62 ± 9.33 | 36.52 ± 7.37 | 0.933 | 40.47 ± 8.96 | 32.74 ± 5.57 | <0.001 *** |
Sleepiness on campus | 8.42 ± 4.18 | 8.86 ± 4.94 | 7.99 ± 3.24 | 0.137 | 10.63 ± 4.62 | 6.25 ± 2.09 | <0.001 *** |
Alertness on campus | 14.90 ± 3.20 | 15.05 ± 3.27 | 14.74 ± 3.13 | 0.476 | 15.38 ± 3.29 | 14.42 ± 3.04 | 0.031 * |
Sleepiness in evening | 7.19 ± 2.31 | 6.96 ± 2.32 | 7.42 ± 2.28 | 0.151 | 7.75 ± 2.08 | 6.64 ± 2.39 | <0.001 *** |
Sleepiness during transport | 6.05 ± 2.33 | 5.74 ± 2.26 | 6.37 ± 2.36 | 0.052 | 6.71 ± 2.47 | 5.41 ± 1.20 | <0.001 *** |
Executive Function test (7th grade, n = 107; 5th grade, n = 105) | |||||||
Sternberg test accuracy b | 96.06 ± 3.15 | 95.47 ± 3.35 | 96.64 ± 2.83 | <0.001 *** | 95.26 ± 3.48 | 96.90 ± 2.51 | <0.001 *** |
Sternberg test reaction time (seconds) | 770.09 ± 172.27 | 782.86 ± 171.21 | 757.68 ± 173.21 | 0.007 ** | 674.20 ± 124.42 | 866.90 ± 159.58 | <0.001 *** |
Eriksen flanker accuracy b | 98.27 ± 2.00 | 97.84 ± 2.29 | 98.69 ± 1.58 | 0.002 ** | 97.94 ± 2.31 | 98.61 ± 1.58 | 0.015 * |
Eriksen flanker test reaction time (seconds) | 598.53 ± 146.47 | 605.22 ± 145.57 | 591.79 ± 147.75 | 0.507 | 502.84 ± 76.93 | 697.00 ± 135.43 | <0.001 *** |
Baron and Kenny’s 4-Step Approach | B (95% CI) | p-Value |
---|---|---|
Step 1 (Path C) | ||
Association between PA and Sternberg test accuracy * | ||
(DV: score of accuracy in Sternberg test #) | ||
IV: Sedentary activity | −0.002 (−0.071, 0.067) | 0.949 |
LPA | 0.007 (−0.069, 0.084) | 0.853 |
MVPA | −0.129 (−0.541, 0.284) | 0.540 |
Step 2 (Path A) | ||
Association between PA and sleep | ||
(DV: sleepiness at school) | ||
Sedentary activity | 0.039 (0.022, 0.056) | <0.001 *** |
LPA | −0.044 (−0.063, −0.026) | <0.001 *** |
MVPA | −0.152 (−0.265, −0.039) | 0.009 ** |
(DV: sleepiness on transportation) | ||
Sedentary activity | 0.023 (0.006, 0.039) | 0.007 ** |
LPA | −0.024 (−0.042, −0.003) | 0.012 ** |
MVPA | −0.161 (−0.253, −0.068) | <0.001 *** |
Step 3 (Path B) | ||
DV: score of accuracy in Sternberg test, controlling for percentage of Sedentary behavior | ||
Sleepiness at school | −0.893 (−1.566, −0.219) | 0.010 ** |
Sleepiness on transportation | 0.494 (−0.215, 1.203) | 0.171 |
DV: score of accuracy in Sternberg test, controlling for percentage of LPA | ||
Sleepiness at school | −0.890 (−1.565, −0.215) | 0.010 ** |
Sleepiness on transportation | 0.497 (−0.211, 1.204) | 0.167 |
DV: score of accuracy in Sternberg test, controlling for percentage of MVPA | ||
Sleepiness at school | −0.882 (−1.554, −0.210) | 0.010 ** |
Sleepiness on transportation | 0.482 (−0.231, 1.196) | 0.183 |
Step 4 (Path C*) | ||
Association between cognitive performance Sternberg # and PA with adjustment for sleep | ||
(DV: Cog #; IV: PA) | ||
Sedentary activity | 0.012 (−0.057, 0.081) | 0.731 |
LPA | −0.011 (−0.089, 0.066) | 0.772 |
MVPA | −0.115 (−0.543, 0.313) | 0.597 |
Total indirect effect of PA on Cog # through sleep | ||
(DV: accuracy in Sternberg test #; IV: sedentary behavior) | ||
Mediator: sleepiness at school | −0.035 (−0.067, −0.012) * | |
Mediator: sleepiness on transportation | 0.011 (−0.002, 0.036) | |
(DV: accuracy in Sternberg test #; IV: LPA) | ||
Mediator: sleepiness at school | 0.040 (0.014, 0.076) * | |
Mediator: sleepiness on transportation | −0.012 (−0.041, 0.001) | |
(DV: accuracy in Sternberg test #; IV: MVPA | ||
Mediator: sleepiness at school | 0.134 (0.029, 0.318) * | |
Mediator: sleepiness on transportation | −0.078 (−0.242, 0.016) |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Sun, F.; Zhang, F.; Ho, K.Y.-F.; Zhang, B.; Wang, Z.; Tse, A.C.-Y. Physical Activity and Executive Functions in Adolescents: The Mediating Role of Sleepiness. Int. J. Environ. Res. Public Health 2022, 19, 12972. https://doi.org/10.3390/ijerph191912972
Sun F, Zhang F, Ho KY-F, Zhang B, Wang Z, Tse AC-Y. Physical Activity and Executive Functions in Adolescents: The Mediating Role of Sleepiness. International Journal of Environmental Research and Public Health. 2022; 19(19):12972. https://doi.org/10.3390/ijerph191912972
Chicago/Turabian StyleSun, Fenghua, Fan Zhang, Karen Ying-Fung Ho, Borui Zhang, Zixin Wang, and Andy Choi-Yeung Tse. 2022. "Physical Activity and Executive Functions in Adolescents: The Mediating Role of Sleepiness" International Journal of Environmental Research and Public Health 19, no. 19: 12972. https://doi.org/10.3390/ijerph191912972
APA StyleSun, F., Zhang, F., Ho, K. Y.-F., Zhang, B., Wang, Z., & Tse, A. C.-Y. (2022). Physical Activity and Executive Functions in Adolescents: The Mediating Role of Sleepiness. International Journal of Environmental Research and Public Health, 19(19), 12972. https://doi.org/10.3390/ijerph191912972