Reporting of Y Balance Test Measurement Procedures in Reliability and Validity Studies: A Scoping Review
Abstract
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
4.1. Reporting Heterogeneity of YBT Measurement Procedures
4.2. Influence of Study Design on Reporting Practices
4.3. Reporting Challenges in Clinical and Injury Populations
4.4. The Conceptual Importance of Key Procedural Elements
4.5. Limitations
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Zemková, E.; Kováčiková, Z. Sport-Specific Training Induced Adaptations in Postural Control and Their Relationship with Athletic Performance. Front. Hum. Neurosci. 2023, 16, 1007804. [Google Scholar] [CrossRef] [PubMed]
- Wang, J.; Qin, Z.; Zhang, Q.; Wang, J. Lower Limb Dynamic Balance, Strength, Explosive Power, Agility, and Injuries in Volleyball Players. J. Orthop. Surg. Res. 2025, 20, 211. [Google Scholar] [CrossRef]
- Shaffer, S.W.; Teyhen, D.S.; Lorenson, C.L.; Halfpap, J.P.; Donofry, D.F.; Walker, M.J.; Childs, J.D. Y-Balance Test: A valid and reliable assessment in older adults. J. Aging Phys. Act. 2013, 21, 231–242. [Google Scholar] [CrossRef]
- Plisky, P.J.; Gorman, P.P.; Butler, R.J.; Kiesel, K.B.; Underwood, F.B.; Elkins, B. The reliability of an instrumented device for measuring components of the Star Excursion Balance Test. N. Am. J. Sports Phys. Ther. 2009, 4, 92–99. [Google Scholar] [PubMed]
- Takahashi, H.; Igawa, T.; Ito, S.; Matsumoto, C.; Ishizaka, M. An examination of the intra-rater reliability of the Y-Balance Test for high school female athletes. J. Phys. Ther. Sci. 2025, 37, 1–5. [Google Scholar] [CrossRef]
- Huang, C.; Ye, J.; Song, Y.; Chen, Y.; Zhang, Z.; Li, X. The effects of fatigue on the lower limb biomechanics of amateur athletes during a Y-Balance Test. Healthcare 2023, 11, 2565. [Google Scholar] [CrossRef]
- Greenberg, E.T.; Barle, M.; Glassmann, E.; Jacob, L.; Jaafar, H.; Johnson, A.; Layug, N.; Rollo, E.; Jung, M.K. Interrater and test–retest reliability of the Y-Balance Test in healthy, early adolescent female athletes. Int. J. Sports Phys. Ther. 2019, 14, 204–213. [Google Scholar] [CrossRef]
- Plisky, P.; Schwartkopf-Phifer, K.; Huebner, B.; Garner, M.B.; Bullock, G. Systematic review and meta-analysis of the Y-Balance Test Lower Quarter: Reliability, discriminant validity, and predictive validity. Int. J. Sports Phys. Ther. 2021, 16, 1190–1209. [Google Scholar] [CrossRef]
- Peters, M.D.J.; Godfrey, C.M.; Khalil, H.; McInerney, P.; Parker, D.; Soares, C.B. Guidance for conducting systematic scoping reviews. Int. J. Evid. Based Healthc. 2015, 13, 141–146. [Google Scholar] [CrossRef] [PubMed]
- Peters, M.D.J.; Marnie, C.; Tricco, A.C.; Pollock, D.; Munn, Z.; Alexander, L.; McInerney, P.; Godfrey, C.M.; Khalil, H. Updated methodological guidance for the conduct of scoping reviews. JBI Evid. Synth. 2020, 18, 2119–2126. [Google Scholar] [CrossRef]
- Zając, B.; Olszewski, M.; Mika, A. Influence of protocol variables on outcomes of the Star Excursion Balance Test group (SEBT, mSEBT, YBT-LQ) in healthy individuals: A systematic review. Front. Physiol. 2024, 15, 1415887. [Google Scholar] [CrossRef] [PubMed]
- Faigenbaum, A.D.; Myer, G.D.; Fernandez, I.P.; Kang, J.; Ratamess, N.A.; Farrell, A.; Radler, T.; Gillett, J.; Chu, D.A. Feasibility and reliability of dynamic postural control measures in children in first through fifth grades. Int. J. Sports Phys. Ther. 2014, 9, 140–148. [Google Scholar] [PubMed]
- Almeida, G.P.L.; Monteiro, I.O.; Marizeiro, D.F.; Maia, L.B.; Ribeiro, D.C. Y-Balance Test has no correlation with the Stability Index of the Biodex Balance System. Musculoskelet. Sci. Pract. 2017, 27, 1–6. [Google Scholar] [CrossRef]
- Walbright, P.D.; Walbright, N.; Ojha, H.; Davenport, T. Validity of functional screening tests to predict lost-time lower quarter injury in a cohort of female collegiate athletes. Int. J. Sports Phys. Ther. 2017, 12, 948–959. [Google Scholar] [CrossRef]
- Linek, P.; Sikora, D.; Wolny, T.; Saulicz, E. Reliability and number of trials of Y-Balance Test in adolescent athletes. Musculoskelet. Sci. Pract. 2017, 31, 72–75. [Google Scholar] [CrossRef]
- Hoch, M.C.; Welsch, L.A.; Hartley, E.M.; Lunz, B. Y-Balance Test performance following a competitive field hockey season: A pretest–posttest study. J. Sport Rehabil. 2017, 26. [Google Scholar] [CrossRef]
- Kenny, S.J.; Palacios-Derflingher, L.; Owoeye, O.B.A.; Whittaker, J.L.; Emery, C.A. Between-day reliability of pre-participation screening components in pre-professional ballet and contemporary dancers. J. Dan. Med. Sci. 2018, 22, 54–62. [Google Scholar] [CrossRef]
- Smith, L.J.; Creps, J.R.; Bean, R.; Rodda, J. Performance and reliability of the Y-Balance Test™ in high school athletes. J. Sports Med. Phys. Fit. 2018, 58, 1671–1675. [Google Scholar] [CrossRef]
- Lacey, M.; Donne, B. Does fatigue impact static and dynamic balance variables in athletes with a previous ankle injury? Int. J. Exerc. Sci. 2019, 12, 1121–1137. [Google Scholar] [CrossRef] [PubMed]
- Freund, J.E.; Stetts, D.M.; Oostindie, A.; Fox, E.J. Lower Quarter Y-Balance Test in healthy women 50–79 years old. J. Women Aging 2019, 31, 475–491. [Google Scholar] [CrossRef]
- Sipe, C.L.; Ramey, K.D.; Plisky, P.P.; Taylor, J.D. Y-Balance Test: A valid and reliable assessment in older adults. J. Aging Phys. Act. 2019, 27, 663–669. [Google Scholar] [CrossRef]
- Schwiertz, G.; Brueckner, D.; Schedler, S.; Kiss, R.; Muehlbauer, T. Performance and reliability of the Lower Quarter Y-Balance Test in healthy adolescents from grade 6 to 11. Gait Posture 2019, 67, 142–146. [Google Scholar] [CrossRef]
- Schwiertz, G.; Beurskens, R.; Muehlbauer, T. Discriminative validity of the lower and upper quarter Y-Balance Test performance: A comparison between healthy trained and untrained youth. BMC Sports Sci. Med. Rehabil. 2020, 12, 73. [Google Scholar] [CrossRef]
- Jagger, K.; Frazier, A.; Aron, A.; Harper, B.; Cacchio, A.; Padua, D.; Distefano, L. Scoring performance variations between the Y-Balance Test, a modified Y-Balance Test, and the modified Star Excursion Balance Test. Int. J. Sports Phys. Ther. 2020, 15, 34–41. [Google Scholar] [CrossRef]
- Grazette, N.; McAllister, S.; Ong, C.W.; Landorf, K.B.; Evans, A.M.; Munteanu, S.E.; Menz, H.B. Reliability of a musculoskeletal profiling test battery in elite academy soccer players. PLoS ONE 2020, 15, e0236341. [Google Scholar] [CrossRef] [PubMed]
- Scinicarelli, G.; Trofenik, M.; Froböse, I.; Tokarski, S.; Ferrauti, A.; Meyer, T. The reliability of common functional performance tests within an experimental test battery for the lower extremities. Sports 2021, 9, 100. [Google Scholar] [CrossRef]
- Alshehre, Y.; Alkhathami, K.; Brizzolara, K.; Pizzari, T.; Harvey, A.; McPoil, T.; Gribble, P.A. Reliability and validity of the Y-Balance Test in young adults with chronic low back pain. Int. J. Sports Phys. Ther. 2021, 16, 628–635. [Google Scholar] [CrossRef]
- Iglesias-Caamaño, M.; Álvarez-Yates, T.; Carballo-López, J.; González-Mohíno, F.; García-González, A.; Sánchez-Sánchez, J.; Requena, B.; González-Ravé, J.M. Interday reliability of a testing battery to assess lateral symmetry and performance in well-trained volleyball players. J. Strength Cond. Res. 2022, 36, 895–901. [Google Scholar] [CrossRef] [PubMed]
- Stoddard, C.A.; Wang-Price, S.; Lam, S.E. Limb dominance does not affect Y-Balance Test performance in non-athlete adolescents. Int. J. Sports Phys. Ther. 2022, 17, 164–173. [Google Scholar] [CrossRef]
- Salas-Gómez, D.; Fernández-Gorgojo, M.; Sanchez-Juan, P.; Bravo-Esteban, E.; Pérez-Bellmunt, A.; Cabello-Manrique, D.; Carreño, T.P.; Ceballos-Laita, L. Quantifying balance deficit in people with ankle fracture six months after surgical intervention through the Y-Balance Test. Gait Posture 2022, 95, 249–255. [Google Scholar] [CrossRef] [PubMed]
- Kuniki, M.; Iwamoto, Y.; Yamagiwa, D.; Yamada, K.; Okada, K.; Ishida, M. Relationship among three different core stability tests in healthy young adults: Validity and gender differences. J. Sport Rehabil. 2022, 31, 385–390. [Google Scholar] [CrossRef]
- Jouira, G.; Rebai, H.; Sahli, S. Reliability of the Y-Balance Test in runners with intellectual disability. J. Sport Rehabil. 2022, 32, 91–95. [Google Scholar] [CrossRef]
- Kattilakoski, O.; Kauranen, N.; Leppänen, M.; Kannus, P.; Pasanen, K.; Vasankari, T.; Parkkari, J. Intrarater Reliability and Analysis of Learning Effects in the Y Balance Test. Methods Protoc. 2023, 6, 41. [Google Scholar] [CrossRef]
- Foldager, F.N.; Aslerin, S.; Bæ Kdahl, S.; Larsen, M.; Tømmerup, S.; Søndergaard, E.; Jørgensen, M.; Jørgensen, K. Interrater and test–retest reliability of the Y-Balance Test: A reliability study including 51 healthy participants. Int. J. Exerc. Sci. 2023, 16, 182–192. [Google Scholar] [CrossRef]
- Ünal, N.N.; Akyol, B.; Balkan, A.F. The reliability and validity of balance tests in hearing-impaired athletes. Ir. J. Med. Sci. 2024, 193, 1091–1098. [Google Scholar] [CrossRef]
- Zheng, Y.; Feng, R.; Hu, W.; Li, Y.; Wang, Q.; Liu, S.; Zhang, C. Investigation of inter-rater and test–retest reliability of the Y-Balance Test in college students with flexible flatfoot. BMC Sports Sci. Med. Rehabil. 2024, 16, 40. [Google Scholar] [CrossRef] [PubMed]
- Miralles-Iborra, A.; Del Coso, J.; De Los Ríos-Calonge, J.; Sanz-Rivas, D.; Fernandez-Gonzalo, R. Deceleration capacity during directional change as a time-efficient (ecological) prescreening of hip adductor force status in amateur soccer players. J. Strength Cond. Res. 2024, 38, 2114–2120. [Google Scholar] [CrossRef]
- Doran, M.G.; Bolley, T.D.; Kellum, J.A.; Kim, H.; Siston, R.A.; Simon, J.E. Reliability of the subjective evaluation of patient biomechanics and motor control during an anterior cruciate ligament return-to-sport assessment. Clin. J. Sport Med. 2025, 36, 127–132. [Google Scholar] [CrossRef]
- Rungruangbaiyok, C.; Lektip, C.; Nawarat, J.; Srirat, S.; Nontasri, S.; Rattanasomthong, W.; Charoensuk, P. Convergent validity of the Lower Quarter Y-Balance Test against Two-Step and Timed Up and Go tests in Thai older adults with and without locomotive syndrome. Int. J. Environ. Res. Public Health 2025, 22, 538. [Google Scholar] [CrossRef] [PubMed]
- Woo, B. Comparative analysis of rest periods between tests on dynamic balance during Y-Balance Test. Korean Soc. Study Phys. Educ. 2023, 28, 221–230. [Google Scholar] [CrossRef]
- Bulow, A.; Bellemare, A.; Anderson, J.; Distefano, L.J.; Padua, D.A. Lower extremity kinematics of the Y-Balance Test in healthy and ACL-injured adolescent females. Int. J. Sports Phys. Ther. 2021, 16, 381–392. [Google Scholar] [CrossRef]
- Ha, S.C.; Fong, D.T.; Chan, K.M. Review of ankle inversion sprain simulators in the biomechanics laboratory. Asia Pac. J. Sports Med. Arthrosc. Rehabil. Technol. 2015, 2, 114–121. [Google Scholar] [CrossRef] [PubMed]
- Koga, H.; Nakamae, A.; Shima, Y.; Iwasa, J.; Myklebust, G.; Engebretsen, L.; Bahr, R.; Krosshaug, T. Mechanisms for noncontact anterior cruciate ligament injuries: Knee joint kinematics in 10 injury situations from female team handball and basketball. Am. J. Sports Med. 2010, 38, 2218–2225. [Google Scholar] [CrossRef] [PubMed]
- Muehlbauer, T.; Granacher, U. Effect of Arm Movement and Task Difficulty on Balance Performance in Children, Adolescents, and Young Adults. Front. Hum. Neurosci. 2022, 16, 854823. [Google Scholar] [CrossRef] [PubMed]
- Lichańska, J.; Zając, B. Does Heel Elevation Affect Lower Quarter Y-Balance Test Performance in Healthy Individuals? Med. Rehabil. 2024, 28, 29–35. [Google Scholar] [CrossRef]

| Author (Year) | Study Focus | Country | Participants (as Reported) | Population Group | Sex | Sample Size | Age (Years) |
|---|---|---|---|---|---|---|---|
| Plisky (2009) [4] | Reliability | USA | Athletes | Athletic | Male | n = 15 | 19.7 ± 0.8 |
| Shaffer (2013) [3] | Reliability | USA | Military personnel | Healthy | Male/ Female | n = 64 (male: 53; female: 11) | 25.2 ± 3.8 |
| Faigenbaum (2014) [12] | Reliability | USA | Healthy children | Healthy | Male/ Female | n = 188 | 6.9–12.1 |
| Almeida (2017) [13] | Reliability & Validity | Brazil | Healthy recreational adults/Injury to the lower limbs | Injury- related | Male/ Female | n = 40 | 20.9 ± 2.5 |
| Walbright (2017) [14] | Validity | USA | Basketball, volleyball athletes | Athletic | Female | n = 36 | Not reported |
| Linek (2017) [15] | Reliability | Poland | Soccer players | Athletic | Male | n = 38 | 15.6 |
| Hoch (2017) [16] | Reliability | USA | Ice hockey players | Athletic | Female | n = 20 | 19.6 ± 1.3 |
| Kenny (2018) [17] | Reliability | Canada | Dancers | Athletic | Male/ Female | n = 38 (male: 3; female: 35) | male: 16.6; female: 19.2 |
| Smith (2018) [18] | Reliability | USA | Soccer, baseball, lacrosse, softball, rugby | Athletic | Male/ Female | n = 110 (male: 51; female: 59) | male: 15.9 ± 1.2; female: 16.1 ± 1.2 |
| Greenberg (2019) [7] | Reliability | USA | Athletes (sport not specified) | Athletic | Female | n = 25 | 12.7 ± 0.6 |
| Lacey (2019) [19] | Reliability & Validity | Ireland | Gaelic football, soccer, rugby athletes | Athletic | Male/ Female | n = 19 | male: 24.0 ± 4.0; female: 28.0 ± 4.0 |
| Freund (2019) [20] | Reliability & Validity | USA | Healthy older adults | Healthy | Female | n = 86 | 50–59: 55.7 ± 2.8; 60–69: 63.6 ± 2.8; 70–79: 73.6 ± 3.0 |
| Sipe (2019) [21] | Reliability | USA | Healthy older adults | Healthy | Male/ Female | n = 30 (male: 15; female: 15) | 66.8 ± 5.4 |
| Schwiertz (2019) [22] | Reliability | Germany | Healthy adolescents | Healthy | Male/ Female | n = 221 | Grade 6: 11.6 ± 0.5; Grade 7: 12.4 ± 0.5; Grade 8: 13.3 ± 0.5; Grade 9: 14.3 ± 0.5; Grade 10: 15.3 ± 0.6; Grade 11: 16.4 ± 0.5 |
| Schwiertz (2020) [23] | Validity | Germany | Soccer and swimming athletes | Athletic | Male | n = 212 (soccer: 138; swimming: 74) | soccer: 14.4 ± 1.9; swimming: 12.3 ± 2.1 |
| Jagger (2020) [24] | Reliability & Validity | USA | Healthy adults | Healthy | Male/ Female | n = 28 (male: 17; female: 11) | 25.0 ± 2.2 |
| Grazette (2020) [25] | Reliability | UK | Soccer players | Athletic | Male | n = 56 | 14.0 ± 1.1 |
| Scinicarelli (2021) [26] | Reliability | Germany | Healthy adults | Healthy | Male/ Female | n = 22 (male: 14; female: 8) | 23.3 ± 3.9 |
| Alshehre (2021) [27] | Reliability & Validity | USA | Low back pain | Injury- related | Male/ Female | n = 30 | 27.4 ± 4.9 |
| Iglesias-Caamaño (2022) [28] | Reliability | Spain | Professional volleyball players | Athletic | Male | n = 13 | 23.3 ± 4.2 |
| Stoddard (2022) [29] | Reliability | USA | Healthy adolescents | Healthy | Male/ Female | n = 26 (male: 4; female: 22) | 13.6 ± 1.0 |
| Salas-Gómez (2022) [30] | Validity | Spain | Ankle fracture | Injury- related | Male/ Female | n = 22 (male: 12; female: 9) | 43.5 ± 10.2 |
| Kuniki (2022) [31] | Validity | Japan | Healthy adults | Healthy | Male/ Female | n = 51 | 20–24 |
| Jouira (2022) [32] | Reliability | Tunisia | Athletes (sport not specified) | Athletic | Male | n = 13 | 25.1 ± 4.5 |
| Kattilakoski (2023) [33] | Reliability | Finland | Healthy recreational adults | Healthy | Male/ Female | n = 16 (male: 4; female: 12) | 39.1 ± 6.8 |
| Foldager (2023) [34] | Reliability | Denmark | Healthy recreational adults | Healthy | Male/ Female | n = 51 (male: 30; female: 21) | 28.0 ± 7.2 |
| Ünal (2024) [35] | Reliability & Validity | Turkey | Hearing-impaired athletes | Injury- related | Not reported | n = 60 | 18–21 |
| Zheng (2024) [36] | Reliability | China | Flatfoot | Injury- related | Male/ Female | n = 30 (male: 14; female: 16) | 21.5 ± 0.3 |
| Miralles (2024) [37] | Reliability | Spain | Healthy adults | Healthy | Male | n = 63 | 23.5 ± 4.5 |
| Takahashi (2025) [5] | Reliability | Japan | Soccer players | Athletic | Female | n = 31 | 16.5 ± 0.5 |
| Doran (2025) [38] | Reliability | USA | Post-ACL reconstruction | Injury- related | Male/ Female | n = 30 | 19.9 ± 7.7 |
| Rungruangbaiyok (2025) [39] | Validity | Thailand | Locomotive syndrome | Injury- related | Not reported | n = 60 | 67.2 ± 4.6 |
| Measurement Procedure | Studies Reporting the Procedure, n (%) | Reliability Studies (n = 21) | Validity Studies (n = 5) | Reliability & Validity Studies (n = 6) |
|---|---|---|---|---|
| Practice trials reported | 24 (75.0%) | 14 (66.7%) | 4 (80.0%) | 6 (100.0%) |
| Predefined error criteria for failed trials | 25 (78.1%) | 16 (76.2%) | 3 (60.0%) | 6 (100.0%) |
| Use of a YBT kit | 23 (71.9%) | 16 (76.2%) | 3 (60.0%) | 4 (66.7%) |
| Normalization of outcome measures | 25 (78.1%) | 17 (81.0%) | 4 (80.0%) | 4 (66.7%) |
| Pre-measurement warm-up | 4 (12.5%) | 3 (14.3%) | 1 (20.0%) | 0 (0.0%) |
| Heel lift allowance | 3 (9.4%) | 2 (9.5%) | 1 (20.0%) | 0 (0.0%) |
| Rest periods between trials or reach directions | 15 (46.9%) | 6 (28.6%) | 3 (60.0%) | 6 (100.0%) |
| Upper-limb restrictions | 11 (34.4%) | 7 (33.3%) | 1 (20.0%) | 3 (50.0%) |
| Specification of trial order for each reach direction | 14 (43.8%) | 11 (52.4%) | 2 (40.0%) | 1 (16.7%) |
| Barefoot testing | 18 (56.3%) | 11 (52.4%) | 2 (40.0%) | 5 (83.3%) |
| Measurement Procedure | Healthy Group (n = 12) | Athletic Group (n = 13) | Injury-Related Group (n = 7) |
|---|---|---|---|
| Practice trials reported | 9 (75.0%) | 9 (69.2%) | 6 (85.7%) |
| Rest periods between trials or reach directions | 3 (25.0%) | 6 (46.2%) | 6 (85.7%) |
| Upper-limb restrictions | 6 (50.0%) | 3 (23.1%) | 2 (28.6%) |
| Heel lift allowance | 3 (25.0%) | 0 (0.0%) | 0 (0.0%) |
| Specification of trial order for each reach direction | 5 (41.7%) | 8 (61.5%) | 1 (14.3%) |
| Predefined error criteria for failed trials | 11 (91.7%) | 8 (61.5%) | 6 (85.7%) |
| Use of a YBT kit | 9 (75.0%) | 10 (76.9%) | 4 (57.1%) |
| Normalization of outcome measures | 11 (91.7%) | 10 (76.9%) | 4 (57.1%) |
| Barefoot testing | 7 (58.3%) | 7 (53.8%) | 4 (57.1%) |
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Takahashi, H.; Igawa, T.; Urata, R.; Ito, S.; Suzuki, K.; Ito, R.; Toda, M.; Matsumoto, C.; Ishizaka, M. Reporting of Y Balance Test Measurement Procedures in Reliability and Validity Studies: A Scoping Review. Sports 2026, 14, 191. https://doi.org/10.3390/sports14050191
Takahashi H, Igawa T, Urata R, Ito S, Suzuki K, Ito R, Toda M, Matsumoto C, Ishizaka M. Reporting of Y Balance Test Measurement Procedures in Reliability and Validity Studies: A Scoping Review. Sports. 2026; 14(5):191. https://doi.org/10.3390/sports14050191
Chicago/Turabian StyleTakahashi, Hiroto, Tatsuya Igawa, Ryunosuke Urata, Shomaru Ito, Kosuke Suzuki, Riyaka Ito, Mika Toda, Chiaki Matsumoto, and Masahiro Ishizaka. 2026. "Reporting of Y Balance Test Measurement Procedures in Reliability and Validity Studies: A Scoping Review" Sports 14, no. 5: 191. https://doi.org/10.3390/sports14050191
APA StyleTakahashi, H., Igawa, T., Urata, R., Ito, S., Suzuki, K., Ito, R., Toda, M., Matsumoto, C., & Ishizaka, M. (2026). Reporting of Y Balance Test Measurement Procedures in Reliability and Validity Studies: A Scoping Review. Sports, 14(5), 191. https://doi.org/10.3390/sports14050191

