The Prevalence of Urinary Incontinence among Adolescent Female Athletes: A Systematic Review
Abstract
:1. Introduction
2. Materials and Methods
2.1. Information Sources and Search
2.2. Eligibility Criteria and Study Selection
2.3. Data Collection Process and Quality Assessment
3. Results
3.1. Study Selection
3.2. Overview of Study Characteristics
3.3. Principle Findings
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Haylen, B.T.; De Ridder, D.; Freeman, R.M.; Swift, S.E.; Berghmans, B.; Lee, J.; Monga, A.; Petri, E.; Rizk, D.E.; Sand, P.K.; et al. An International Urogynecological Association (IUGA)/International Continence Society (ICS) joint report on the terminology for female pelvic floor dysfunction. Int. Urogynecol. J. 2010, 21, 5–26. [Google Scholar] [CrossRef] [PubMed]
- Aoki, Y.; Brown, H.W.; Brubaker, L.; Cornu, J.N.; Daly, J.O.; Cartwright, R. Urinary incontinence in women. Nat. Rev. Dis. Prim. 2017, 3. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Minassian, V.A.; Drutz, H.P.; Al-Badr, A. Urinary incontinence as a worldwide problem. Int. J. Gynecol. Obstet. 2003, 82, 327–338. [Google Scholar] [CrossRef]
- Almousa, S.; Bandin Van Loon, A. The prevalence of urinary incontinence in nulliparous female sportswomen: A systematic review. J. Sports Sci. 2019, 37, 1663–1672. [Google Scholar] [CrossRef] [PubMed]
- De Araujo, M.P.; Sartori, M.G.F.; Girão, M.J.B.C. Incontinência de atletas: Proposta de novo termo para uma nova mulher. Rev. Bras. Ginecol. e Obstet. 2017, 39, 441–442. [Google Scholar]
- Bø, K.; Borgen, J.S. Prevalence of stress and urge urinary incontinence in elite athletes and controls. Med. Sci. Sports Exerc. 2001, 33, 1797–1802. [Google Scholar] [CrossRef]
- Bø, K.; Sundgot-Borgen, J. Are former female elite athletes more likely to experience urinary incontinence later in life than non-athletes? Scand. J. Med. Sci. Sports 2010, 20, 100–104. [Google Scholar] [CrossRef]
- Pires, T.; Pires, P.; Moreira, H.; Viana, R. Prevalence of Urinary Incontinence in High-Impact Sport Athletes: A Systematic Review and Meta-Analysis. J. Hum. Kinet. 2020, 73, 279–288. [Google Scholar] [CrossRef]
- Almousa, S.; Bandin van Loon, A. The prevalence of urinary incontinence in nulliparous adolescent and middle-aged women and the associated risk factors: A systematic review. Maturitas 2018, 107, 78–83. [Google Scholar] [CrossRef]
- de Mattos Lourenco, T.R.; Matsuoka, P.K.; Baracat, E.C.; Haddad, J.M. Urinary incontinence in female athletes: A systematic review. Int. Urogynecol. J. 2018, 29, 1757–1763. [Google Scholar] [CrossRef]
- Rubilotta, E.; Balzarro, M.; D’Amico, A.; Cerruto, M.A.; Bassi, S.; Bovo, C.; Iacovelli, V.; Bianchi, D.; Artibani, W.; Agrò, E.F. Pure stress urinary incontinence: Analysis of prevalence, estimation of costs, and financial impact. BMC Urol. 2019, 19, 44. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Dobrowolski, S.L.; Pudwell, J.; Harvey, M.A. Urinary incontinence among competitive rope-skipping athletes: A cross-sectional study. Int. Urogynecol. J. 2020, 31, 881–886. [Google Scholar] [CrossRef] [PubMed]
- Rial, T.; Chulvi-Medrano, I.; Faigenbaum, A.D.; Stracciolini, A. Pelvic Floor Dysfunction in Women. Strength Cond. J. 2020, 42, 82–91. [Google Scholar] [CrossRef]
- Logan, B.L.; Foster-Johnson, L.; Zotos, E. Urinary incontinence among adolescent female athletes. J. Pediatr. Urol. 2018, 14, 241.e1–241.e9. [Google Scholar] [CrossRef]
- Bø, K. Urinary incontinence, pelvic floor dysfunction, exercise and sport. Sports Med. 2004, 34, 451–464. [Google Scholar] [CrossRef]
- Teixeira, R.V.; Colla, C.; Sbruzzi, G.; Mallmann, A.; Paiva, L.L. Prevalence of urinary incontinence in female athletes: A systematic review with meta-analysis. Int. Urogynecol. J. 2018, 29, 1717–1725. [Google Scholar] [CrossRef]
- Hagovska, M.; Svihra, J.; Bukova, A.; Horbacz, A.; Svihrova, V. The impact of physical activity measured by the International Physical Activity questionnaire on the prevalence of stress urinary incontinence in young women. Eur. J. Obstet. Gynecol. Reprod. Biol. 2018, 228, 308–312. [Google Scholar] [CrossRef]
- Carls, C. The prevalence of stress urinary incontinence in high school and college-age female athletes in the midwest: Implications for education and prevention. Urol. Nurs. 2007, 27, 21–24. [Google Scholar]
- Parmigiano, T.R.; Zucchi, E.V.M.; de Araujo, M.P.; Guindalini, C.S.C.; de Aquino Castro, R.; Di Bella, Z.I.K.D.J.; Girão, M.J.B.C.; Cohen, M.; Sartori, M.G.F. Pre-participation gynecological evaluation of female athletes: A new proposal. Einstein 2014, 12, 459–466. [Google Scholar] [CrossRef] [Green Version]
- Gram, M.C.D.; Bø, K. High level rhythmic gymnasts and urinary incontinence: Prevalence, risk factors, and influence on performance. Scand. J. Med. Sci. Sports 2020, 30, 159–165. [Google Scholar] [CrossRef]
- Casey, E.K.; Temme, K. Pelvic floor muscle function and urinary incontinence in the female athlete. Phys. Sportsmed. 2017, 45, 399–407. [Google Scholar] [CrossRef] [PubMed]
- Moser, H.; Leitner, M.; Eichelberger, P.; Kuhn, A.; Baeyens, J.P.; Radlinger, L. Pelvic floor muscle displacement during jumps in continent and incontinent women: An exploratory study. Neurourol. Urodyn. 2019, 38, 2374–2382. [Google Scholar] [CrossRef] [PubMed]
- Leitner, M.; Moser, H.; Eichelberger, P.; Kuhn, A.; Baeyens, J.P.; Radlinger, L. Evaluation of pelvic floor kinematics in continent and incontinent women during running: An exploratory study. Neurourol. Urodyn. 2018, 37, 609–618. [Google Scholar] [CrossRef] [PubMed]
- Ree, M.L.; Nygaard, I.; Bø, K. Muscular fatigue in the pelvic floor muscles after strenuous physical activity. Acta Obstet. Gynecol. Scand. 2007, 86, 870–876. [Google Scholar] [CrossRef]
- Kruger, J.A.; Dietz, H.P.; Murphy, B.A. Pelvic floor function in elite nulliparous athletes. Ultrasound Obstet. Gynecol. 2007, 30, 81–85. [Google Scholar] [CrossRef]
- Rial, T.; Stracciolini, A. Pelvic floor dysfunction in female athletes: Is relative energy deficiency in sport a risk factor? Curr. Sports Med. Rep. 2019, 18, 255–257. [Google Scholar]
- Sorrigueta-Hernández, A.; Padilla-Fernandez, B.-Y.; Marquez-Sanchez, M.-T.; Flores-Fraile, M.-C.; Flores-Fraile, J.; Moreno-Pascual, C.; Lorenzo-Gomez, A.; Garcia-Cenador, M.-B.; Lorenzo-Gomez, M.-F. Benefits of Physiotherapy on Urinary Incontinence in High-Performance Female Athletes. Meta-Analysis. J. Clin. Med. 2020, 9, 3240. [Google Scholar] [CrossRef]
- Moher, D.; Liberati, A.; Tetzlaff, J.; Altman, D.G. Preferred Reporting Items for Systematic Reviews and Meta-Analyses: The PRISMA Statement. PLoS Med. 2009, 6, e1000097. [Google Scholar] [CrossRef] [Green Version]
- von Elm, E.; Altman, D.G.; Egger, M.; Pocock, S.J.; Gøtzsche, P.C.; Vandenbroucke, J.P. The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: Guidelines for reporting observational studies. Lancet 2007, 370, 1453–1457. [Google Scholar] [CrossRef]
- Groothausen, J.; Siemer, H.; Kemper, H.C.G.; Twisk, J.; Welten, D.C. Influence of peak strain on Lumbar Bone Mineral Density: An analysis of 15-year physical activity in young males and females. Pediatr. Exerc. Sci. 1997, 9, 159–173. [Google Scholar] [CrossRef]
- Eliasson, K.; Larsson, T.; Mattsson, E. Prevalence of stress incontinence in nulliparous elite trampolinists. Scand. J. Med. Sci. Sports 2002, 12, 106–110. [Google Scholar] [CrossRef] [PubMed]
- Fernandes, A.; Fitz, F.; Silva, A.; Filoni, E.; Filho, J.M. Evaluation of the Prevalence of Urinary Incontinence Symptoms in Adolescent Female Soccer Players and their Impact on Quality of Life. Occup. Environ. Med. 2014, 71, A59–A60. [Google Scholar] [CrossRef] [Green Version]
- Da Roza, T.; Brandão, S.; Mascarenhas, T.; Jorge, R.N.; Duarte, J.A. Urinary Incontinence and Levels of Regular Physical Exercise in Young Women. Int. J. Sports Med. 2015, 36, 776–780. [Google Scholar] [CrossRef] [PubMed]
- Almeida, M.B.A.; Barra, A.A.; Saltiel, F.; Silva-Filho, A.L.; Fonseca, A.M.R.M.; Figueiredo, E.M. Urinary incontinence and other pelvic floor dysfunctions in female athletes in Brazil: A cross-sectional study. Scand. J. Med. Sci. Sports 2016, 26, 1109–1116. [Google Scholar] [CrossRef]
- Hagovska, M.; Švihra, J.; Buková, A.; Hrobacz, A.; Dračková, D.; Švihrová, V.; Kraus, L. Prevalence of urinary incontinence in females performing high-impact exercises. Int. J. Sports Med. 2017, 38, 210–216. [Google Scholar] [CrossRef] [Green Version]
- Carder, S.L.; Giusti, N.E.; Vopat, L.M.; Tarakemeh, A.; Baker, J.; Vopat, B.G.; Mulcahey, M.K. The Concept of Sport Sampling Versus Sport Specialization: Preventing Youth Athlete Injury: A Systematic Review and Meta-analysis. Am. J. Sports Med. 2020, 48, 2850–2857. [Google Scholar] [CrossRef]
- Whitney, K.E.; Holtzman, B.; Parziale, A.; Ackerman, K.E. Urinary incontinence is more common in adolescent female athletes with low energy availability. Orthop. J. Sports Med. 2019, 7, 2325967119S0011. [Google Scholar] [CrossRef] [Green Version]
- Eime, R.M.; Young, J.A.; Harvey, J.T.; Charity, M.J.; Payne, W.R. A systematic review of the psychological and social benefits of participation in sport for children and adolescents: Informing development of a conceptual model of health through sport. Int. J. Behav. Nutr. Phys. Act. 2013, 10, 98. [Google Scholar] [CrossRef] [Green Version]
Authors, Year | Study | Sample Size | Mean Age (Range or SD) | Sport | Grade Impact * Based on Criteria [30] | Main Outcome (UI Tools) | % UI | Secondary Outcomes | Secondary Outcomes Results |
---|---|---|---|---|---|---|---|---|---|
Eliasson et al., 2002 [31]. | Cross- sectional | n = 35 | 15 (12–22) | Trampoline | 3 | Pad-weighting test | 80 mean leakage of 28 g | Muscular strength with perineometer | 23 of 27 diodes on the perineometer for 6 s and 20 for 30 s, 30 cm H2O of intravaginal squeeze pressure |
Carls et al., 2007 [18] | Cross- sectional | n = 86 | 17 (14–21) | High impact sports | 3 | The Bristol Female Lower Urinary Tract Symptoms Questionnaire | 28 | Educational prevention and treatment of UI | 90% had never heard of pelvic muscle exercises (Kegels) |
Parmigiano et al., 2014 [19] | Cross- sectional | n = 148 | 15 (2.0) | Soccer, handball, basketball, wrestling, judo, track and field, swimming, boxing | 2,3 | Pre-participation gynecological examination (PPGE) | Total = 18.2 Track and Field = 14.30; Basketball = 8.30; Boxing = 25; Soccer= 11.60; Handball = 6.40; Judo = 33.30; Swimming = 16.70 | Eating attitudes test | 15% risk of eating disorders; 89.9% were not familiar with the occurrence of UI in athletes; 87.1% would not mention to coach. |
Fernandes et al., 2014 [32] | Cross- sectional | n = 35 | 15.6 (12–19) | Soccer | 2 | Urinary Incontinence short form (ICIQ-UI SF) | 62.8 | The pad test and King’s Health Questionnaire (KHQ) | 35.2 score in the General Health domain; 37.3 in the emotions domain; 26.5 in the Sleep/Energy domain. |
Da Roza et al., 2015 [33] | Cross- sectional | n = 22 | 18.1 (3.4) | Trampoline | 3 | Urinary Incontinence short form (ICIQ-UI SF) | 72.7 | Amount of urinary loss, frequency of involuntary loss | 93.7% self-classified as moderate amount of UI; frequency of UI once a week or less. |
Almeida et al., 2015 [34] | Cross- sectional | n = 67 | 18 (5) | Volleyball, judo, gymnastics, trampoline, swimming | 2,3 | Urinary Incontinence short form (ICIQ-UI SF) | Total = 52.2 Volleyball = 43.5; Trampoline = 88.9; Swimming = 50; Judo = 44.4 | Fecal Incontinence Severity Index, Female Sexual Function Index, vaginal symptoms and pelvic organ prolapse symptoms (ICIQ-VS) | Involuntary loss of gas: 64.6% athletes, 58.5% nonathletes; POP: 0% athletes, 2% nonathletes; dyspareunia: 13.8% athletes, 21.9% nonathletes; 31.4% athlete’s strategy: “Emptying the bladder before training”; 52.0% nonathlete’s strategy: “Emptying the bladder before leaving the house”. |
Logan et al., 2017 [14] | Pilot study: Cross-sectional | n = 44 | (13–17) | Cross-country, track and field field-hockey, soccer | 2,3 | Urinary Incontinence short form (ICIQ-UI-SF) | 48 | Identify risk factor | 32% vigorous exercise, 34% during laughter, 14% activities of daily living (ADLs). |
Dobrowolski et al., 2019 [12] | Cross- sectional | n = 89 | 16 (15–21) * | Rope skipping | 3 | Prevalence of SUI 11-point Likert scale (0–10) | 75 | Quality of life (ICIQ-SF), non-validated sport-specific questionnaire inspired by (IIQ-7) | 21% indicated an overall interference of SUI with RS as moderate or greater; a slight impact of SUI on their overall quality of life. Female athletes managed SUI with containment products, fluid limitation, and timed voiding. |
Gram and Bø 2020 [20] | Cross- sectional | n = 107 | 14.5 (1.6) | Rhythmic gymnastics | 3 | Urinary Incontinence short form (ICIQ-UI SF) | 31.8 | Triad-specific self-report questionnaire Beighton score | 46.7% hypermobile; 9.3% disordered eating; 29.4% afraid of visible leakage; 14.7% afraid leakage would happen again; 69.1% had never heard about the pelvic floor. |
Weight (kg) | BMI (kg/m2) | Hours of Training/wk | |
---|---|---|---|
Eliasson et al. [31] | 50 (42–60) * | 20.3 (19–23) * | - |
Carls et al. [18] | - | - | - |
Parmigiano et al. [19] | - | 21.6 (2.8) | 10.9 (4.0) |
Fernandes et al. [32] | - | NP | - |
Da Roza et al. [33] | 55.0 (4.9) | 20.4 (1.3) | 11.3 (2.7) |
Almeida et al. [34] | - | 21.7 (2.6) ** | 19.0 (6.3) |
Logan et al. [14] | - | - | - |
Dobrowolski et al. [12] | - | 21 (20–23) ** | 6 (4–6) |
Gram & Bø [20] | - | 18.9 (2.2) | 15.7 (7.8) |
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Rebullido, T.R.; Gómez-Tomás, C.; Faigenbaum, A.D.; Chulvi-Medrano, I. The Prevalence of Urinary Incontinence among Adolescent Female Athletes: A Systematic Review. J. Funct. Morphol. Kinesiol. 2021, 6, 12. https://doi.org/10.3390/jfmk6010012
Rebullido TR, Gómez-Tomás C, Faigenbaum AD, Chulvi-Medrano I. The Prevalence of Urinary Incontinence among Adolescent Female Athletes: A Systematic Review. Journal of Functional Morphology and Kinesiology. 2021; 6(1):12. https://doi.org/10.3390/jfmk6010012
Chicago/Turabian StyleRebullido, Tamara Rial, Cinta Gómez-Tomás, Avery D. Faigenbaum, and Iván Chulvi-Medrano. 2021. "The Prevalence of Urinary Incontinence among Adolescent Female Athletes: A Systematic Review" Journal of Functional Morphology and Kinesiology 6, no. 1: 12. https://doi.org/10.3390/jfmk6010012
APA StyleRebullido, T. R., Gómez-Tomás, C., Faigenbaum, A. D., & Chulvi-Medrano, I. (2021). The Prevalence of Urinary Incontinence among Adolescent Female Athletes: A Systematic Review. Journal of Functional Morphology and Kinesiology, 6(1), 12. https://doi.org/10.3390/jfmk6010012