Postural Balance in Relation with Vision and Physical Activity in Healthy Young Adults
Abstract
:1. Introduction
2. Materials and Methods
2.1. Participants
2.2. Assessments
2.3. Statistical Analysis
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Conflicts of Interest
References
- La Morena, J.M.; Castro, E.A.; Rojo-Tirado, M.Á.; Bores-García, D. Relation of Physical Activity Level to Postural Balance in Obese and Overweight Spanish Adult Males: A Cross-Sectional Study. Int. J. Environ. Res. Public Health 2021, 18, 8282. [Google Scholar] [CrossRef] [PubMed]
- Orofino, F.; Sgro, F.; Coppola, R.; Crescimanno, C.; Lipoma, M. Examining the Influence of Different Physical Activity Training on the Postural Stability of University Students. Int. J. Hum. Mov. Sports Sci. 2015, 3, 40–45. [Google Scholar] [CrossRef]
- Thapa, P.B.; Gideon, P.; Brockman, K.G.; Fought, R.L.; Ray, W.A. Clinical and Biomechanical Measures of Balance Fall Predictors in Ambulatory Nursing Home Residents. J. Gerontol. Ser. A 1996, 51A, M239–M246. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Piirtola, M.; Era, P. Force Platform Measurements as Predictors of Falls among Older People–A Review. Gerontology 2006, 52, 1–16. [Google Scholar] [CrossRef]
- Inanir, A.; Cakmak, B.; Hisim, Y.; Demirturk, F. Evaluation of Postural Equilibrium and Fall Risk during Pregnancy. Gait Posture 2014, 39, 1122–1125. [Google Scholar] [CrossRef]
- Khan, K.S.; Andersen, H. The Impact of Diabetic Neuropathy on Activities of Daily Living, Postural Balance and Risk of Falls-A Systematic Review. J. Diabetes Sci. Technol. 2021, 16, 289–294. [Google Scholar] [CrossRef]
- Alonso, A.; Luna, N.; Mochizuki, L.; Barbieri, F.; Santos, S.; Greve, J.D.A. The Influence of Anthropometric Factors on Postural Balance: The Relationship between Body Composition and Posturographic Measurements in Young Adults. Clinics 2012, 67, 1433–1441. [Google Scholar] [CrossRef]
- Do Nascimento, J.A.; Silva, C.C.; dos Santos, H.H.; de Almeida, J.J.F.; de Andrade, P.R. A Preliminary Study of Static and Dynamic Balance in Sedentary Obese Young Adults: The Relationship between BMI, Posture and Postural Balance. Clin. Obes. 2017, 7, 377–383. [Google Scholar] [CrossRef]
- Greve, J.M.D.; Cuğ, M.; Dülgeroğlu, D.; Brech, G.C.; Alonso, A.C. Relationship between Anthropometric Factors, Gender, and Balance under Unstable Conditions in Young Adults. BioMed Res. Int. 2013, 2013, 850424. [Google Scholar] [CrossRef]
- Nurwulan, N.R.; Jiang, B.C.; Iridiastadi, H. Posture and Texting: Effect on Balance in Young Adults. PLoS ONE 2015, 10, e0134230. [Google Scholar] [CrossRef]
- Jakobsen, M.D.; Sundstrup, E.; Krustrup, P.; Aagaard, P. The Effect of Recreational Soccer Training and Running on Postural Balance in Untrained Men. Eur. J. Appl. Physiol. 2011, 111, 521–530. [Google Scholar] [CrossRef]
- Steinberg, N.; Nemet, D.; Pantanowitz, M.; Zeev, A.; Hallumi, M.; Sindiani, M.; Meckel, Y.; Eliakim, A. Longitudinal Study Evaluating Postural Balance of Young Athletes. Percept. Mot. Ski. 2016, 122, 256–279. [Google Scholar] [CrossRef]
- Romero-Franco, N.; Gallego-Izquierdo, T.; Martínez-López, E.J.; Hita-Contreras, F.; Catalina, O.-P.M.; Martínez-Amat, A. Postural Stability and Subsequent Sports Injuries during Indoor Season of Athletes. J. Phys. Ther. Sci. 2014, 26, 683–687. [Google Scholar] [CrossRef] [Green Version]
- Read, P.J.; Oliver, J.L.; de Ste Croix, M.B.A.; Myer, G.D.; Lloyd, R.S. Neuromuscular Risk Factors for Knee and Ankle Ligament Injuries in Male Youth Soccer Players. Sports Med. 2016, 46, 1059–1066. [Google Scholar] [CrossRef] [Green Version]
- McKeon, P.O.; Hertel, J. Systematic Review of Postural Control and Lateral Ankle Instability, Part I: Can Deficits Be Detected with Instrumented Testing. J. Athl. Train. 2008, 43, 293–304. [Google Scholar] [CrossRef] [Green Version]
- Pereira, Y.S.; de Medeiros, J.M.; Barela, J.Â.; Barela, A.M.F.; Amorim, C.F.; Sousa, C.d.O.; de Andrade, P.R.; Ferreira, J.J.d.A.; dos Santos, H.H. Static Postural Balance in Healthy Individuals: Comparisons between Three Age Groups. Mot. Rev. De Educ. Física 2014, 20, 85–91. [Google Scholar] [CrossRef] [Green Version]
- Davies, K.A.B.; Pickles, S.; Sprung, V.S.; Kemp, G.J.; Alam, U.; Moore, D.R.; Tahrani, A.A.; Cuthbertson, D.J. Reduced Physical Activity in Young and Older Adults: Metabolic and Musculoskeletal Implications. Ther. Adv. Endocrinol. Metab. 2019, 10, 2042018819888824. [Google Scholar] [CrossRef]
- González, K.; Fuentes, J.; Márquez, J.L. Physical Inactivity, Sedentary Behavior and Chronic Diseases. Korean J. Fam. Med. 2017, 38, 111–115. [Google Scholar] [CrossRef] [Green Version]
- Drugus, D.; Repanovici, A.; Popa, D.; Tirziman, E.; Roman, N.; Rogozea, L.; Miclaus, R. Social Impact of Public Health Care in Risk Management Implementation. Rev. De Cercet. Si Interv. Soc. 2017, 56, 79–87. [Google Scholar]
- Victor, L.G.V.; de Oliveira, M.R.; Teixeira, D.d.C.; Paes, M.A.; Fujisawa, D.S.; Bispo, N.d.N.d.C.; Junior, R.A.d.S. Postural Control during One-Leg Stance in Active and Sedentary Older People. Mot. Rev. Educ. Física 2014, 20, 339–345. [Google Scholar] [CrossRef] [Green Version]
- Pizzigalli, L.; Ahmaidi, S.; Rainoldi, A. Effects of Sedentary Condition and Longterm Physical Activity on Postural Balance and Strength Responses in Elderly Subjects. Sport Sci. Health 2014, 10, 135–141. [Google Scholar] [CrossRef]
- Prioli, A.C.; Júnior, P.B.F.; Barela, J.A. Physical Activity and Postural Control in the Elderly: Coupling between Visual Information and Body Sway. Gerontology 2005, 51, 145–148. [Google Scholar] [CrossRef]
- Duck, A.A.; Stewart, M.W.; Robinson, J.C. Physical Activity and Postural Balance in Rural Community Dwelling Older Adults. Appl. Nurs. Res. 2019, 48, 1–7. [Google Scholar] [CrossRef]
- Hayashi, D.; Gonçalves, C.G.; Parreira, R.B.; Fernandes, K.B.P.; Teixeira, D.C.; Silva, R.A.; Probst, V.S. Postural Balance and Physical Activity in Daily Life (PADL) in Physically Independent Older Adults with Different Levels of Aerobic Exercise Capacity. Arch. Gerontol. Geriatr. 2012, 55, 480–485. [Google Scholar] [CrossRef] [PubMed]
- Buatois, S.; Gauchard, G.C.; Aubry, C.; Benetos, A.; Perrin, P. Current Physical Activity Improves Balance Control during Sensory Conflicting Conditions in Older Adults. Int. J. Sports Med. 2007, 28, 53–58. [Google Scholar] [CrossRef]
- Bulbulian, R.; Hargan, M.L. The Effect of Activity History and Current Activity on Static and Dynamic Postural Balance in Older Adults. Physiol. Behav. 2000, 70, 319–325. [Google Scholar] [CrossRef]
- Petroman, R.; Rata, A.L. Balance Performance in Sedentary and Active Healthy Young Individuals–a Cross-Sectional Study. Phys. Educ. Stud. 2020, 24, 115–119. [Google Scholar] [CrossRef] [Green Version]
- Zemková, E.; Štefániková, G.; Muyor, J.M. Load Release Balance Test under Unstable Conditions Effectively Discriminates between Physically Active and Sedentary Young Adults. Hum. Mov. Sci. 2016, 48, 142–152. [Google Scholar] [CrossRef]
- Torres, S.F.; Reis, J.G.; de Abreu, D.C.C. Influence of Gender and Physical Exercise on Balance of Healthy Young Adults. Fisioter. Mov. 2014, 27, 399–406. [Google Scholar] [CrossRef] [Green Version]
- Zhu, W.; Li, Y.; Wang, B.; Zhao, C.; Wu, T.; Liu, T.; Sun, F. Objectively Measured Physical Activity Is Associated with Static Balance in Young Adults. Int. J. Environ. Res. Public Health 2021, 18, 10787. [Google Scholar] [CrossRef]
- Paillard, T. Plasticity of the Postural Function to Sport and/or Motor Experience. Neurosci. Biobehav. Rev. 2017, 72, 129–152. [Google Scholar] [CrossRef] [PubMed]
- Kiers, H.; van Dieën, J.; Dekkers, H.; Wittink, H.; Vanhees, L. A Systematic Review of the Relationship between Physical Activities in Sports or Daily Life and Postural Sway in Upright Stance. Sports Med. 2013, 43, 1171–1189. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Maitre, J.; Paillard, T.P. Influence of the Plantar Cutaneous Information in Postural Regulation Depending on the Age and the Physical Activity Status. Front. Hum. Neurosci. 2016, 10, 409. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Šarabon, N.; Kozinc, Ž.; Marković, G. Effects of Age, Sex and Task on Postural Sway during Quiet Stance. Gait Posture 2022, 92, 60–64. [Google Scholar] [CrossRef]
- Olchowik, G.; Tomaszewski, M.; Olejarz, P.; Warchoł, J.; Różańska-Boczula, M.; Maciejewski, R. The Human Balance System and Gender. Acta Bioeng. Biomech. 2015, 17, 69–74. [Google Scholar] [CrossRef]
- Cruz-Gómez, N.S.; Plascencia, G.; Villanueva-Padrón, L.A.; Jáuregui-Renaud, K. Influence of Obesity and Gender on the Postural Stability during Upright Stance. Obes. Facts 2011, 4, 212–217. [Google Scholar] [CrossRef]
- Błaszczyk, J.W.; Beck, M.; Sadowska, D. Assessment of Postural Stability in Young Healthy Subjects Based on Directional Features of Posturographic Data: Vision and Gender Effects. Acta Neurobiol. Exp. 2014, 74, 433–442. [Google Scholar]
- Schmidt, D.; Carpes, F.P.; Milani, T.L.; Germano, A.M.C. Different Visual Manipulations Have Similar Effects on Quasi-Static and Dynamic Balance Responses of Young and Older People. PeerJ 2021, 9, e11221. [Google Scholar] [CrossRef]
- Gaerlan, M.G.; Alpert, P.T.; Cross, C.; Louis, M.; Kowalski, S. Postural Balance in Young Adults: The Role of Visual, Vestibular and Somatosensory Systems. J. Am. Acad. Nurse Pract. 2012, 24, 375–381. [Google Scholar] [CrossRef]
- Liaw, M.-Y.; Chen, C.-L.; Pei, Y.-C.; Leong, C.-P.; Lau, Y.-C. Comparison of the Static and Dynamic Balance Performance in Young, Middle-Aged, and Elderly Healthy People. Chang Gung Med. J. 2009, 32, 297–304. [Google Scholar]
- Park, R.-Y.; Kee, H.-S.; Kang, J.-H.; Lee, S.-J.; Yoon, S.-R.; Jung, K.-I. Effect of Dominant Versus Non-Dominant Vision in Postural Control. Ann. Rehabil. Med. 2011, 35, 427–431. [Google Scholar] [CrossRef] [PubMed]
- Thompson, L.A.; Badache, M.; Cale, S.; Behera, L.; Zhang, N. Balance Performance as Observed by Center-of-Pressure Parameter Characteristics in Male Soccer Athletes and Non-Athletes. Sports 2017, 5, 86. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Paillard, T.H.; Noé, F. Effect of Expertise and Visual Contribution on Postural Control in Soccer. Scand. J. Med. Sci. Sports 2006, 16, 345–348. [Google Scholar] [CrossRef] [PubMed]
- Lubetzky-Vilnai, A.; McCoy, S.W.; Price, R.; Ciol, M.A. Young Adults Largely Depend on Vision for Postural Control When Standing on a BOSU Ball but Not on Foam. J. Strength Cond. Res. 2015, 29, 2907–2918. [Google Scholar] [CrossRef]
- Guidelines for the Data Processing and Analysis of the “International Physical Activity Questionnaire”. Available online: http://www.ipaq.ki.se (accessed on 25 September 2021).
- Dinger, M.K.; Behrens, T.K.; Han, J.L. Validity and Reliability of the International Physical Activity Questionnaire in College Students. Am. J. Health Educ. 2006, 37, 337–343. [Google Scholar] [CrossRef]
- Murphy, J.J.; Murphy, M.H.; MacDonncha, C.; Murphy, N.; Nevill, A.M.; Woods, C.B. Validity and Reliability of Three Self-Report Instruments for Assessing Attainment of Physical Activity Guidelines in University Students. Meas. Phys. Educ. Exerc. Sci. 2017, 21, 134–141. [Google Scholar] [CrossRef]
- Www.Chinesport.Com. Available online: http://www.chinesport.com/catalog/posture-analysis/stabilometric-analysis/03001-podata-2-0 (accessed on 22 September 2018).
- Mancini, M.; Horak, F.B. The Relevance of Clinical Balance Assessment Tools to Differentiate Balance Deficits. Eur. J. Phys. Rehabil. Med. 2010, 46, 239–248. [Google Scholar]
- Jbabdi, M.; Boissy, P.; Hamel, M. Assessing Control of Postural Stability in Community-Living Older Adults Using Performance-Based Limits of Stability. BMC Geriatr. 2008, 31, 8. [Google Scholar] [CrossRef] [Green Version]
- Amaricai, E.; Onofrei, R.R.; Suciu, O.; Marcauteanu, C.; Stoica, E.T.; Negruțiu, M.L.; David, V.L.; Sinescu, C. Do Different Dental Conditions Influence the Static Plantar Pressure and Stabilometry in Young Adults? PLoS ONE 2020, 15, e0228816. [Google Scholar] [CrossRef] [Green Version]
- Perinetti, G. Dental Occlusion and Body Posture: No Detectable Correlation. Gait Posture 2006, 24, 165–168. [Google Scholar] [CrossRef]
- Scoppa, F.; Gallamini, M.; Belloni, G.; Messina, G. Clinical Stabilometry Standardization: Feet Position in the Static Stabilometric Assessment of Postural Stability. Acta Med. Mediterr. 2017, 33, 707–713. [Google Scholar] [CrossRef]
- Paillard, T.; Noé, F. Techniques and Methods for Testing the Postural Function in Healthy and Pathological Subjects. BioMed. Res. Int. 2015, 2015, 891390. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Andreeva, A.; Melnikov, A.; Skvortsov, D.; Akhmerova, K.; Vavaev, A.; Golov, A.; Draugelite, V.; Nikolaev, R.; Chechelnickaia, S.; Zhuk, D.; et al. Postural Stability in Athletes: The Role of Sport Direction. Gait Posture 2021, 89, 120–125. [Google Scholar] [CrossRef] [PubMed]
Low Physical Activity Group (n = 36) | Moderate Physical Activity Group (n = 42) | All (n = 78) | p * | |
---|---|---|---|---|
Age, years (mean ± SD) | 20.56 ± 1.18 | 20.71 ± 1.19 | 20.64 ± 1.18 | NS |
Gender | ||||
Female, n (%) | 19 (52.78) | 21 (50) | 40 (51.28) | NS |
Male, n (%) | 17 (47.22) | 21 (50) | 38 (48.72) | |
Weight, kg (mean ± SD) | 73.55 ± 12.93 | 62.56 ± 9.44 | 67.63 ± 12.41 | <0.0001 |
Height, cm (mean ± SD) | 172.6 ± 8.32 | 172.5 ± 7.95 | 172.5 ± 8.07 | NS |
BMI, kg/m2 (mean ± SD) | 24.61 ± 3.62 | 20.95 ± 2.34 | 22.64 ± 3.5 | <0.0001 |
Low Physical Activity Group (n = 36) | Moderate Physical Activity Group (n = 42) | All (n = 78) | ||||
---|---|---|---|---|---|---|
Eyes Open | Eyes Closed | Eyes Open | Eyes Closed | Eyes Open | Eyes Closed | |
CoPX, mm (median [IQR]) | 4.5 [−3–8] | 3 [−3.5–9] | 0 [−6–5] | −0.5 [−7–4] | 2 [−5–7] | 1 [−6–6] |
CoPY, mm (median [IQR]) | 4.5 [−2–16.5] | 10 [−1.5–17] | 4.5 [−4–16] | 3 [−3–17] | 4.5 [−3–16] | 6 [−2–17] |
COP displacement, mm (median [IQR]) | 13.43 [8.83–21.32] | 14.4 [10.99–19.98] | 13.91 [8.06–20.59] | 13.19 [7.61–19.64] | 13.67 [13.67–21.09] | 13.72 [10.05–19.64] |
CoP path length, mm (median [IQR]) | 254 [228–298] | 271 [247–322] | 233.5 [200.5–259.5] | 280.5 [249–308] | 245 [211–278] | 279 [248–320] |
90% Confidence ellipse, mm2 (median [IQR]) | 52 [31.5–75] | 68.5 [50–105] | 54 [32–103] | 70 [47–120] | 53 [32–91] | 70 [47–111] |
Maximum CoP speed, mm/s (median [IQR]) | 47.5 [41.5–54.5] | 65 [58–79] | 52.5 [45–73] | 64 [55–84] | 49 [44–69] | 64 [57–81] |
Parameter | Physical Activity | Vision | Gender | Vision × Physical Activity | Gender × Physical Activity |
---|---|---|---|---|---|
CoPX | F = 4.005 p = 0.04 η2 = 0.05 | F = 2.67 p = 0.1 η2 = 0.03 | F = 1.03 p = 0.31 η2 = 0.01 | F = 2.24 p = 0.13 η2 = 0.02 | F = 1.26 p = 0.26 η2 = 0.01 |
CoPY | F = 0.31 p = 0.57 η2 = 0.004 | F = 3.44 p = 0.06 η2 = 0.44 | F = 0 p = 0.99 η2 = 0 | F = 0.103 p = 0.74 η2 = 0.001 | F = 2.5 p = 0.18 η2 = 0.03 |
CoP displacement | F = 0.13 p = 0.71 η2 = 0.002 | F = 0.13 p = 0.71 η2 = 0.002 | F = 1.95 p = 0.16 η2 = 0.2 | F = 0.17 p = 0.67 η2 = 0.002 | F = 4.06 p = 0.04 η2 = 0.05 |
CoP path length | F = 1.404 p = 0.24 η2 = 0.01 | F = 49.3 p < 0.001 η2 = 0.4 | F = 2.55 p = 0.11 η2 = 0.33 | F = 7.9 p = 0.006 η2 = 0.09 | F = 1.02 p = 0.31 η2 = 0.01 |
90% confidence ellipse | F = 0.41 p = 0.52 η2 = 0.006 | F = 5.94 p = 0.01 η2 = 0.07 | F = 0.58 p = 0.44 η2 = 0.008 | F = 1.49 p = 0.22 η2 = 0.02 | F = 0.01 p = 0.9 η2 = 0 |
Maximum CoP speed | F = 1.03 p = 0.31 η2 = 0.01 | F = 19.78 p < 0.001 η2 = 0.21 | F = 0.74 p = 0.39 η2 = 0.1 | F = 3.14 p = 0.08 η2 = 0.04 | F = 1.64 p = 0.2 η2 = 0.2 |
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
Onofrei, R.R.; Amaricai, E. Postural Balance in Relation with Vision and Physical Activity in Healthy Young Adults. Int. J. Environ. Res. Public Health 2022, 19, 5021. https://doi.org/10.3390/ijerph19095021
Onofrei RR, Amaricai E. Postural Balance in Relation with Vision and Physical Activity in Healthy Young Adults. International Journal of Environmental Research and Public Health. 2022; 19(9):5021. https://doi.org/10.3390/ijerph19095021
Chicago/Turabian StyleOnofrei, Roxana Ramona, and Elena Amaricai. 2022. "Postural Balance in Relation with Vision and Physical Activity in Healthy Young Adults" International Journal of Environmental Research and Public Health 19, no. 9: 5021. https://doi.org/10.3390/ijerph19095021
APA StyleOnofrei, R. R., & Amaricai, E. (2022). Postural Balance in Relation with Vision and Physical Activity in Healthy Young Adults. International Journal of Environmental Research and Public Health, 19(9), 5021. https://doi.org/10.3390/ijerph19095021