Analisis Kinerja Teknik Forehand Drive pada Atlet Tenis Meja: Tinjauan Naratif Berdasarkan Literatur Terkini
DOI:
https://doi.org/10.53905/joska.v3i02.19Keywords:
forehand drive, tenis meja, biomekanika olahraga, keterampilan motorik, performa atlet, tinjauan naratifAbstract
Objectives: Forehand drive merupakan teknik dasar yang paling dominan dan fundamental dalam permainan tenis meja modern. Teknik ini berperan signifikan dalam menghasilkan serangan yang efektif, akurasi pukulan, serta penguasaan permainan secara keseluruhan. Keberhasilan eksekusi forehand drive tidak hanya bergantung pada kekuatan lengan semata, melainkan merupakan hasil integrasi kompleks antara faktor biomekanika, kondisi fisik, dan kemampuan koordinasi motorik. Artikel ini bertujuan untuk menganalisis dan mensintesis faktor-faktor yang memengaruhi performa teknik forehand drive pada atlet tenis meja berdasarkan temuan-temuan ilmiah terkini dalam rentang publikasi 2015–2025.
Methods: Penelitian ini menggunakan pendekatan tinjauan naratif (narrative review) dengan menganalisis berbagai publikasi ilmiah dari basis data Scopus, Web of Science, PubMed, dan Google Scholar. Analisis difokuskan pada aspek biomekanika, pembelajaran motorik, koordinasi gerak, kekuatan fisik, serta strategi pelatihan.
Results: Kajian mengidentifikasi empat tema utama yang berkontribusi terhadap performa forehand drive, yaitu: (1) biomekanika gerak—khususnya rotasi batang tubuh dan rantai kinetik segmental; (2) komponen kekuatan fisik terutama daya ledak tungkai; (3) koordinasi motorik dan sinkronisasi gerak multi-segmental; serta (4) strategi latihan berbasis umpan balik dan teknologi analisis gerak.
Conclusion: Forehand drive merupakan keterampilan kompleks yang memerlukan pengembangan aspek biomekanika, fisik, dan kognitif secara simultan. Program latihan terintegrasi berbasis bukti ilmiah dan pemanfaatan teknologi modern direkomendasikan untuk mengoptimalkan penguasaan teknik forehand drive pada atlet tenis meja.
References
Bańkosz, Z., & Winiarski, S. (2018a). The Evaluation of Changes of Angles in Selected Joints During Topspin Forehand in Table Tennis. Motor Control, 22(3), 314–337. https://doi.org/10.1123/mc.2017-0057
Bańkosz, Z., & Winiarski, S. (2018b). Correlations between Angular Velocities in Selected Joints and Velocity of Table Tennis Racket during Topspin Forehand and Backhand. PubMed, 17(2), 330–338. https://pubmed.ncbi.nlm.nih.gov/29769835
Bańkosz, Z., & Winiarski, S. (2020). Kinematic Parameters of Topspin Forehand in Table Tennis and Their Inter- and Intra-Individual Variability. PubMed, 19(1), 138–148. https://pubmed.ncbi.nlm.nih.gov/32132837
Bańkosz, Z., & Winiarski, S. (2025). Kinematics of Topspin Stroke Combinations in Table Tennis and its Inter-Individual Variability. Journal of Sports Science and Medicine, 24(2), 311–325. https://doi.org/10.52082/jssm.2025.311
Chen, Y., Hsueh, Y.-C., & Tsai, C.-L. (2012). Switching The Horizontal Grf To The Path Of Progression In The Table Tennis Forehand Drive. ISBS - Conference Proceedings Archive, 1(1). https://ojs.ub.uni-konstanz.de/cpa/article/download/5366/4935
Ferrández, C. S., Marsan, T., Poulet, Y., Rouch, P., Thoreux, P., & Sauret, C. (2020). Physiology, biomechanics and injuries in table tennis: A systematic review. SPIRE - Sciences Po Institutional REpository, 36(2), 95–104. https://doi.org/10.1016/j.scispo.2020.04.007
Fuchs, M., Liu, R., Lanzoni, I. M., Munivrana, G., Straub, G., Tamaki, S., Yoshida, K., Zhang, H., & Lames, M. (2018). Table tennis match analysis: a review. Journal of Sports Sciences, 36(23), 2653–2662. https://doi.org/10.1080/02640414.2018.1450073
Guarnieri, A., Laurenti, F., Mazzei, S., Presta, V., & Condello, G. (2025). Assessing Cognitive–Motor Performance in Table Tennis: Validity and Reliability of the Reactive Table Tennis Test. Applied Sciences, 15(18), 10163–10163. https://doi.org/10.3390/app151810163
Gusdernawati, A., Widiyanto, W., & Nasrulloh, A. (2021). Biomechanical analysis of topspin techniques in table tennis games. MEDIKORA, 20(2), 125–133. https://doi.org/10.21831/medikora.v20i2.40891
He, Y., Fekete, G., Sun, D., Baker, J. S., Shao, S., & Gu, Y. (2022). Lower Limb Biomechanics during the Topspin Forehand in Table Tennis: A Systemic Review. Bioengineering, 9(8), 336–336. https://doi.org/10.3390/bioengineering9080336
He, Z., Yang, Z., Xu, J., Chen, H., Li, X., Wang, A., Yang, J., Chow, G. C.-C., & Chen, X. (2025). Real-Time Accurate Determination of Table Tennis Ball and Evaluation of Player Stroke Effectiveness with Computer Vision-Based Deep Learning. Applied Sciences, 15(10), 5370–5370. https://doi.org/10.3390/app15105370
Iino, Y., & Kojima, T. (2011). Kinetics of the upper limb during table tennis topspin forehands in advanced and intermediate players. Sports Biomechanics, 10(4), 361–377. https://doi.org/10.1080/14763141.2011.629304
Irawan, R., Azam, M., Rahayu, S., Setyawati, H., Soedjatmiko, S., S, A., Priyono, B., & Nugroho, A. (2023). Biomechanical Motion of the Tennis Forehand Stroke: Analyzing the Impact on the Ball Speed Using Biofor Analysis Software. Physical Education Theory and Methodology, 23(6), 918–924. https://doi.org/10.17309/tmfv.2023.6.14
Kidokoro, S., Inaba, Y., Yoshida, K., Yamada, K., & Ozaki, H. (2019). The influence of shoulder and torso joint mobility on three different topspin forehands in a situation accompanied by body movement in Japanese elite table tennis players. Taiikugaku Kenkyu (Japan Journal of Physical Education Health and Sport Sciences), 64(1), 169–185. https://doi.org/10.5432/jjpehss.18029
Kondrič, M., Zagatto, A. M., & Sekulić, D. (2023). The science of table tennis: Contemporary trends and future directions. Sports, 11(4), 78–92. https://doi.org/10.3390/sports11040078
Li, C., & Deng, S. (2025). Experimental study on the influence of intelligent mirror feedback System on the Acquisition of table tennis teaching skills in Colleges and universities. 390–394. https://doi.org/10.1145/3796028.3796087
Lin, K.-C., Hung, H.-C., & Chen, N. (2023). The effect of wearable technology on badminton learning performance: a multiple feedback WISER model in physical education. Smart Learning Environments, 10(1). https://doi.org/10.1186/s40561-023-00247-9
Malagoli, I. L., Michele, R. D., Merni, F., & Bartolomei, S. (2021). Performance indicators in elite table tennis players. International Journal of Environmental Research and Public Health, 18(7), 3519. https://doi.org/10.3390/ijerph18073519
Mao, C., Liu, T., Li, X., Lu, Z., Li, Z., Xing, K., Li-xia, C., & Sun, Y. (2023). A Comparative Biomechanical Analysis of Topspin Forehand against Topspin and Backspin in Table Tennis. Applied Sciences, 13(14), 8119–8119. https://doi.org/10.3390/app13148119
Murphy, C. P., Jackson, R. C., & Williams, A. M. (2015). Perceiving context: The key to anticipation in sport. Loughborough University Institutional Repository (Loughborough University). https://dspace.lboro.ac.uk/2134/20941
Piras, A., Lanzoni, I. M., Raffi, M., Persiani, M., & Squatrito, S. (2016). The within-task criterion to determine successful and unsuccessful table tennis players. International Journal of Sports Science & Coaching, 11(4), 523–531. https://doi.org/10.1177/1747954116655050
Qian, J., Zhang, Y., Baker, J. S., & Gu, Y. (2016). Effects of performance level on lower limb kinematics during table tennis forehand loop. PubMed, 18(3), 149–155. https://pubmed.ncbi.nlm.nih.gov/27840437
Sanusi, K. A. M., Mitri, D. D., Limbu, B., & Klemke, R. (2021). Table Tennis Tutor: Forehand Strokes Classification Based on Multimodal Data and Neural Networks. Sensors, 21(9), 3121–3121. https://doi.org/10.3390/s21093121
Sari, D. N., Wulandari, I. G. A. A., Hardiansyah, S., & Zulbahri, Z. (2020). Contributions of Arm Muscle Strength Against Forehand Drive Skills for Table Tennis Athletes. https://doi.org/10.2991/assehr.k.200805.034
Suisdareni, S., & Tomoliyus, T. (2021). The effect of drill exercise and reaction speed on the drive accuracy of beginner table tennis athletes. Jurnal Keolahragaan, 9(2), 231–237. https://doi.org/10.21831/jk.v9i2.36539
Wang, Z., Lampert, J., Mülling, K., Schölkopf, B., & Peters, J. (2011). Learning anticipation policies for robot table tennis. 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems, 332–337. https://doi.org/10.1109/iros.2011.6094892
Wong, D. W., Lee, W. C. C., & Lam, W. (2020). Biomechanics of Table Tennis: A Systematic Scoping Review of Playing Levels and Maneuvers. Applied Sciences, 10(15), 5203–5203. https://doi.org/10.3390/app10155203
Wu, C., Chen, Y.-X., Hou, A. W., Chen, P., & Chou, M.-T. (2025). An AI-based posture recognition system for analyzing the impact of core muscle strength on the forehand loop against backspin in table tennis. International Journal of Sports Science & Coaching. https://doi.org/10.1177/17479541251389701
Yang, J., Huang, J., & Ti, H. (2025). Application of AI in table tennis technique optimization based on biomechanics. Molecular & Cellular Biomechanics, 22(3), 1300–1300. https://doi.org/10.62617/mcb1300
Zagatto, A. M., Kondrič, M., Knechtle, B., Nikolaidis, P. T., & Sperlich, B. (2021). Energetic demand and physical conditioning in table tennis. Frontiers in Physiology, 12, 689–701. https://doi.org/10.3389/fphys.2021.689703
Zagatto, A. M., Kondrič, M., Knechtle, B., Nikolaidis, P. Τ., & Sperlich, B. (2017). Energetic demand and physical conditioning of table tennis players. A study review. Journal of Sports Sciences, 36(7), 724–731. https://doi.org/10.1080/02640414.2017.1335957
Zhou, C., Lu, Y., Wang, Y., & Yang, Q. (2017). The Utilization of Different Cues in Visual Anticipation in Skilled Table Tennis Players. Medicine & Science in Sports & Exercise, 49, 709–709. https://doi.org/10.1249/01.mss.0000518882.47995.1f
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Jimmy Saputra Sinaga, Enjel Sitanggang, Paul Fransisco Munthe , Nathanael Revaldo Naibaho, Samsuddin Siregar (Author)

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.


