This work is licensed under the Creative Commons Attribution 4.0 International License.
Zhang, H., Zhou, Z., & Yang, Q. (2018). Match analyses of table tennis in China: a systematic review. Journal of sports sciences, 36(23), 2663-2674.Search in Google Scholar
Zhang, Y., & Breedlove, J. (2021). Sustaining market competitiveness of table tennis in China through the application of digital technology. Sport in Society, 24(10), 1770-1790.Search in Google Scholar
Sun, X., Lu, L., & Shi, M. (2023, August). Evaluation of Technical Ability of High-Level Table Tennis Players Based on Multimedia Video. In EAI International Conference, BigIoT-EDU (pp. 171-182). Cham: Springer Nature Switzerland.Search in Google Scholar
Sung, C. Y. (2019). A smart analysis of technical skills of top male table tennis players. Smart Science, 7(4), 231-238.Search in Google Scholar
Zeng, W. (2023). Metabolism and physical fitness characteristics in table tennis players. Revista Brasileira de Medicina do Esporte, 29, e2022_0604.Search in Google Scholar
Yu, C., Shao, S., Baker, J. S., Awrejcewicz, J., & Gu, Y. (2019). A comparative biomechanical analysis of the performance level on chasse step in table tennis. International Journal of Sports Science & Coaching, 14(3), 372-382.Search in Google Scholar
He, Y., Lyu, X., Sun, D., Baker, J. S., & Gu, Y. (2021). The kinematic analysis of the lower limb during topspin forehand loop between different level table tennis athletes. PeerJ, 9, e10841.Search in Google Scholar
Chen, M. Z., Wang, X., Chen, Q., Ma, Y., Malagoli Lanzoni, I., & Lam, W. K. (2022). An analysis of whole-body kinematics, muscle strength and activity during cross-step topspin among table tennis players. International Journal of Performance Analysis in Sport, 22(1), 16-28.Search in Google Scholar
Marsan, T., Rouch, P., Thoreux, P., Jacquet-Yquel, R., & Sauret, C. (2019). Comparison of hip joint mechanical energetics in table tennis forehand and backhand drives. International Journal of Racket Sports Science, 1(2), 37-43.Search in Google Scholar
Lam, W. K., Fan, J. X., Zheng, Y., & Lee, W. C. C. (2019). Joint and plantar loading in table tennis topspin forehand with different footwork. European journal of sport science, 19(4), 471-479.Search in Google Scholar
Mishra, R. J. (2023). A Systematic Literature Review of Kinematics involved in Table Tennis at Different Achievement Levels. NeuroQuantology, 21(6), 1708.Search in Google Scholar
Yang, X., Mei, Q., Shao, S., Gu, W., He, Y., Zhu, R., & Gu, Y. (2022). Understanding sex-based kinematic and kinetic differences of chasse-step in elite table tennis athletes. Bioengineering, 9(6), 246.Search in Google Scholar
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.Search in Google Scholar
Schneider, R., Lewerentz, L., Lüskow, K., Marschall, M., & Kemnitz, S. (2018). Statistical analysis of table-tennis ball trajectories. Applied Sciences, 8(12), 2595.Search in Google Scholar
Iino, Y. (2018). Hip joint kinetics in the table tennis topspin forehand: relationship to racket velocity. Journal of Sports Sciences, 36(7), 834-842.Search in Google Scholar
Shao, S., Yu, C., Song, Y., Baker, J. S., Ugbolue, U. C., Lanzoni, I. M., & Gu, Y. (2020). Mechanical character of lower limb for table tennis cross step maneuver. International Journal of Sports Science & Coaching, 15(4), 552-561.Search in Google Scholar
Martini Simone,Valavanis Kimon P.,Stefanovic Margareta,Rutherford Matthew J. & Rizzo Alessandro. (2024). Correction to the Euler Lagrange Multirotor Model with Euler Angles Generalized Coordinates. Journal of Intelligent & Robotic Systems(1).Search in Google Scholar
Chu Zhang,Yue Zhang,Zhengbo Li,Zhao Zhang,Muhammad Shahzad Nazir & Tian Peng. (2024). Enhancing state of charge and state of energy estimation in Lithium-ion batteries based on a TimesNet model with Gaussian data augmentation and error correction. Applied Energy122669-.Search in Google Scholar
Svetov I. E. & Polyakova A. P. (2024). Reconstruction of Three-Dimensional Vector Fields Based on Values of Normal, Longitudinal, and Weighted Radon Transforms. Journal of Applied and Industrial Mathematics(4),842-858.Search in Google Scholar
Claudio J DaSilva. (2024). A comprehensive analysis of the ‘coming and going’ phenomenon of the projectile motion of a sphere under air resistance. Physica Scripta(5).Search in Google Scholar
Luigi Brugnano,Felice Iavernaro & Ewa B. Weinmüller. (2024). Weighted least squares collocation methods. Applied Numerical Mathematics113-128.Search in Google Scholar