Resultados da medição do salto vertical usando VJMeter e prancha vertical: observação do nível de precisão do VJMeter

Autores

DOI:

https://doi.org/10.47197/retos.v59.107976

Palavras-chave:

precisão de medição, salto vertical, ferramenta de medida, vjmeter

Resumo

Nas diversas atividades esportivas, ferramentas são essenciais para facilitar o processo, incluindo a medição do salto vertical, que é frequentemente realizado em diferentes esportes. A necessidade de ferramentas práticas, fáceis de usar e altamente precisas é fundamental para medir saltos verticais em diversos ambientes, cada um com limitações únicas. Esta pesquisa tem como objetivo conhecer o nível de precisão do dispositivo VJMeter desenvolvido para medidas de salto vertical. Empregando uma abordagem quantitativa, o estudo comparou medidas de salto vertical obtidas a partir de uma prancha em pé e do dispositivo VJMeter. Participaram do estudo 10 alunos do curso de Educação Física que praticavam basquete. A variável de pesquisa incluiu os resultados das medidas do salto vertical, categorizadas em duas amostras independentes: medidas da prancha em pé e do aparelho VJMeter. A análise dos dados foi realizada por meio do teste de Mann-Whitney no SPSS versão 25. Os resultados indicaram um valor de p de 0,987, maior que 0,05, o que significa que não há diferenças significativas entre as medidas de salto vertical obtidas com a prancha em pé e o dispositivo VJMeter. . Portanto, pode-se concluir que o dispositivo VJMeter demonstra um nível confiável de precisão para medição de saltos verticais.

Palavras-chave: precisão de medição; vjímetro; salto vertical; ferramenta de medida

Biografias do Autor

  • Supriyadi Supriyadi, State University of Malang

    Supriyadi é professor e pesquisador em Educação Esportiva, Faculdade de Ciências do Esporte, Universidade Estadual de Malang. Foco de pesquisa nas áreas de Saúde Esportiva e Análise do Movimento.

  • Moch Yunus, State University of Malang

    Moch Yunus é professor e pesquisador em Educação Médica, Faculdade de Medicina, Universidade Estadual de Malang. Foco de pesquisa na área de Medicina Esportiva.

  • Lokananta Teguh Hari Wiguno, State University of Malang

    Lokananta Teguh Hari Wiguno é professor e pesquisador em Educação Física, Saúde e Recreação, Faculdade de Ciências do Esporte, Universidade Estadual de Malang. Foco de pesquisa na área de Aprendizagem do Movimento.

  • Abi Fajar Fathoni, State University of Malang

    Abi Fajar Fathoni é professor e pesquisador em Educação Física, Saúde e Recreação, Faculdade de Ciências do Esporte, Universidade Estadual de Malang. Foco de pesquisa na área de Educação Física e Desenvolvimento e Inovação Esportiva.

  • Indi Ni'matur Rohmatika, State University of Malang

    Indi Ni'matur Rohmatika  é estudante de educação esportiva na Faculdade de Ciências do Esporte da Universidade Estadual de Malang. Foco de pesquisa na área de Educação Esportiva.

Referências

Alawna, M., & Mohamed, A. A. (2020). Short-term and long-term effects of ankle joint taping and bandaging on balance, proprioception and vertical jump among volleyball players with chronic ankle instability. Physical Therapy in Sport, 46(3), 145–154. https://doi.org/10.1016/j.ptsp.2020.08.015

Amanulla, C. H., Wakif, A., Boulahia, Z., Fazuruddin, S., & Noor Mohammed, S. (2019). A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating. Nonlinear Engineering, 8(1), 534–545. https://doi.org/10.1515/nleng-2018-0065

Arosha Senanayake, S. M. N., & Naim, A. G. (2019). Smart Sensing and Biofeedback for Vertical Jump in Sports. In Smart Sensors, Measurement and Instrumentation (Vol. 29, pp. 63–81). Springer International Publishing. https://doi.org/10.1007/978-3-319-99540-3_5

Boriani, G., Svennberg, E., Guerra, F., Linz, D., Casado-Arroyo, R., Malaczynska-Rajpold, K., … Leclercq, C. (2022). Reimbursement practices for use of digital devices in atrial fibrillation and other arrhythmias: a European Heart Rhythm Association survey. Europace, 24(11), 1834–1843. https://doi.org/10.1093/europace/euac142

Boyarkina, I. (2021). Positive influence of certain sports on learning and second language acquisition processes. Zbornik Radova Filozofskog Fakulteta u Pristini, 51(1), 309–320. https://doi.org/10.5937/zrffp51-30724

Castro Benavides, L. M., Tamayo Arias, J. A., Burgos, D., & Martens, A. (2022). Measuring digital transformation in higher education institutions – content validity instrument. Applied Computing and Informatics. https://doi.org/10.1108/ACI-03-2022-0069

Damaianti, V. S., Mulyati, Y., & Abidin, Y. (2023). A HOTS-Based Digital Measuring Instrument for Reading Literacy Skills in the Indonesian Context. In Proceedings of the 3rd International Conference on Educational Science and Teacher Profession (ICETeP 2021) (pp. 52–61). Atlantis Press SARL. https://doi.org/10.2991/978-2-494069-19-0_7

Delang, M. D., Hannon, J. P., Goto, S., Bothwell, J. M., & Garrison, J. C. (2021). Female adolescent soccer players utilize different neuromuscular strategies between limbs during the propulsion phase of a lateral vertical jump. International Journal of Sports Physical Therapy, 16(3), 695–703. https://doi.org/10.26603/001c.22134

Fathoni, A. F., Mu’arifin, M., Hwa, M. C. Y., & Mokmin, N. A. M. (2023). VJMP Effectiveness and Efficiency for Measuring Vertical Jump. International Journal of Disabilities Sports and Health Sciences, 7(Special Issue 1), 141–149. https://doi.org/10.33438/ijdshs.1379420

Fernández-Galván, L. M., Casado, A., & Domínguez, R. (2024). Evaluación y prescripción del salto vertical y horizontal en futbolistas. Revisión narrativa Assessment and prescription of vertical and horizontal jumping in soccer players. Narrative review. Retos, 52(2), 410–420. https://doi.org/10.47197/RETOS.V52.101834

Giustino, V., Messina, G., Patti, A., Padua, E., Zangla, D., Drid, P., … Bianco, A. (2022). Effects of a Postural Exercise Program on Vertical Jump Height in Young Female Volleyball Players with Knee Valgus. International Journal of Environmental Research and Public Health, 19(7), 1–9. https://doi.org/10.3390/ijerph19073953

Gür, S., Soyal, M., & Doğan, Ö. (2022). Investigation of the relationship between vertical jump and core performance on competition shooting performance in elite female basketball players. Journal of Physical Education and Sport, 22(4), 948–954. https://doi.org/10.7752/jpes.2022.04120

Harato, K., Morishige, Y., Kobayashi, S., Niki, Y., & Nagura, T. (2022). Biomechanical features of drop vertical jump are different among various sporting activities. BMC Musculoskeletal Disorders, 23(1), 1–12. https://doi.org/10.1186/s12891-022-05290-0

Hurr, C. (2021). Acute local cooling to the lower body during recovery does not improve repeated vertical jump performance. International Journal of Environmental Research and Public Health, 18(9), 1–9. https://doi.org/10.3390/ijerph18095026

Ivanović, J., Gajević, A., & Gajić, I. (2019). The Importance and Role of The Isometric Leg Press Test in The Technological Process of Training Process Managing. Homo Sporticus, 56(2), 37–44. Retrieved from https://search.ebscohost.com/login.aspx?direct=true&db=s3h&AN=143515511&site=ehost-live

Kiss, H., Fitzpatrick, K. M., & Piko, B. F. (2020). The digital divide: Risk and protective factors and the differences in problematic use of digital devices among Hungarian youth. Children and Youth Services Review, 108(4), 1234–1247. https://doi.org/10.1016/j.childyouth.2019.104612

Klebba, M., Adamczyk, A., Wąż, M., & Iwen, D. (2023). Application of Multi-Criteria Optimization Methods in the Calibration Process of Digital Measuring Instruments. Sensors, 23(6), 43–56. https://doi.org/10.3390/s23062984

Köse, D. E., Akşit, T., Açıkgöz, O., & Ceyhan, G. (2023). Time Course of Changes in Straddle Jump and Vertical Jump Performance After Acute Static Stretching in Artistic Gymnasts. Science of Gymnastics Journal, 15(1), 75–85. https://doi.org/10.52165/sgj.15.1.75-85

Kozinc, Ž., & Pleša, J. (2023). Discrepancy Among Different Methods for Vertical Jump Height Determination and Its Implications for Field-Based Testing: A Narrative Review. Measurement in Physical Education and Exercise Science, 27(3), 248–256. https://doi.org/10.1080/1091367X.2022.2163398

Mahar, M. T., Welk, G. J., Janz, K. F., Laurson, K., Zhu, W., & Baptista, F. (2022). Estimation of Lower Body Muscle Power from Vertical Jump in Youth. Measurement in Physical Education and Exercise Science, 26(4), 324–334. https://doi.org/10.1080/1091367X.2022.2041420

Majid, N. C., & Fauzi. (2021). The effect of sprint training on vertical jump height of female youth volleyball players. International Journal of Human Movement and Sports Sciences, 9(2), 334–339. https://doi.org/10.13189/SAJ.2021.090222

Mancilla, C. S., Maldonado, K. H., Lorca, M. H., Pérez, J. C., Albarrán, P. M., Martínez-lema, D., … Guede-rojas, F. (2023). Efectos de un protocolo de calentamiento sprint y pliométrico sobre la altura y la potencia de salto vertical en jugadoras de voleibol adolescentes. Un estudio cruzado aleatorizado (Effects of a sprint and plyometric warm-up protocol on vertical jump heig. RETOS. Nuevas Tendencias En Educación Física, Deporte y Recreación, 2041(2), 304–311.

Marković, S., Dopsaj, M., Tomažič, S., Kos, A., Nedeljković, A., & Umek, A. (2021). Can imu provide an accurate vertical jump height estimate? Applied Sciences (Switzerland), 11(24), 1–11. https://doi.org/10.3390/app112412025

Miller, J. D., Fry, A. C., Ciccone, A. B., & Poggio, J. (2022). Analysis of Rate of Force Development as a Vertical Jump Height Predictor. Research Quarterly for Exercise and Sport, 94(3), 638–645. https://doi.org/10.1080/02701367.2022.2036315

Oh, D. S., Choi, Y. H., Shim, Y. J., Park, S. H., & Lee, M. M. (2020). Concurrent validity, inter-, and intrarater reliabilities of smart device based application for measuring vertical jump performance. Baltic Journal of Health and Physical Activity, 12(3), 35–46. https://doi.org/10.29359/BJHPA.12.3.04

Özaltaş, H. N., & Serin, E. (2022). The Effect of Caffeine use at Different Times on Vertical Jump and Long Jump Performance in Elite Male Athletes. Pakistan Journal of Medical and Health Sciences, 16(2), 648–652. https://doi.org/10.53350/pjmhs22162648

Pagaduan, J., & Pojskic, H. (2020). A Meta-Analysis on the Effect of Complex Training on Vertical Jump Performance. Journal of Human Kinetics, 71(1), 255–265. https://doi.org/10.2478/hukin-2019-0087

Podrigalo, O. O., Borisova, O. V., Podrigalo, L. V., Iermakov, S. S., Romanenko, V. V., Podavalenko, O. V., … Volodchenko, J. O. (2019). Comparative analysis of the athletes’ functional condition in cyclic and situational sports. Physical Education of Students, 23(6), 313–319. https://doi.org/10.15561/20755279.2019.0606

Rani, S., Hutagalung, J. E., & Dermawan, A. (2021). Implementasi Speedometer Digital pada Mobil Listrik Menggunakan Arduino Uno. J-Com (Journal of Computer), 1(3), 269–274. https://doi.org/10.33330/j-com.v1i3.1412

Soyal, M., Aksoy, Ö., Şengöl, O., & Kiliç, S. (2023). Investigation of the relationship between isokinetic lower extremity strength and the vertical jump parameter in elite women football players. Pedagogy of Physical Culture and Sports, 27(3), 247–253. https://doi.org/10.15561/26649837.2023.0309

Štefko, R., Bačík, R., Fedorko, R., Oleárová, M., & Rigelský, M. (2019). Analysis of consumer preferences related to the use of digital devices in the e-commerce dimension. Entrepreneurship and Sustainability Issues, 7(1), 25–33. https://doi.org/10.9770/jesi.2019.7.1(2)

Tan, E., Montalvo, S., Gonzalez, M. P., Dietze-Hermosa, M., Min, S., & Dorgo, S. (2022). Changes in vertical jump performance and body composition before and after COVID-19 lockdown. Journal of Human Sport and Exercise, 18(1), 224–241. https://doi.org/10.14198/JHSE.2023.181.18

Williams, F. (2022). The use of digital devices by district nurses in their assessment of service users. British Journal of Community Nursing, 27(7), 342–348. https://doi.org/10.12968/bjcn.2022.27.7.342

Wilson, M. T., Macgregor, L. J., Fyfe, J., Hunter, A. M., Hamilton, D. L., & Gallagher, I. J. (2022). Bayesian analysis of changes in standing horizontal and vertical jump after different modes of resistance training. Journal of Sports Sciences, 40(15), 1700–1711. https://doi.org/10.1080/02640414.2022.2100676

Yu, F., Salisbury, D., & Mathiason, M. A. (2021). Inter-individual differences in the responses to aerobic exercise in Alzheimer’s disease: Findings from the FIT-AD trial. Journal of Sport and Health Science, 10(1), 65–72. https://doi.org/10.1016/j.jshs.2020.05.007

Zorba, E. (2021). Examination of the Relationship between Anthropometric Characteristics of Elite Wresters and Their Strength and Vertical Jump Performance. Spor ve Eğitim Bilimleri Dergisi, 8(8–2), 208–216. https://doi.org/10.33468/sbsebd.169

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Publicado

02-10-2024

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Artigos de caráter científico: trabalhos de pesquisas básicas e/ou aplicadas.

Como Citar

Supriyadi, S., Yunus, M., Wiguno, L. T. H., Fathoni, A. F., & Rohmatika, I. N. (2024). Resultados da medição do salto vertical usando VJMeter e prancha vertical: observação do nível de precisão do VJMeter. Retos, 59, 658-665. https://doi.org/10.47197/retos.v59.107976