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Butnariu, S., Duguleana, M., Brondi, R., & Carrozzino, M. (2018). An interactive haptic system for experiencing traditional archery. Acta Polytechnica Hungarica.Search in Google Scholar
Labonte, Andrew, M., Barclay, John, & S., et al. (2010). Use of bait to increase archery deer harvest in an urban-suburban landscape. Journal of Wildlife Management.Search in Google Scholar
Ranglack, D. H., Proffitt, K. M., Canfield, J. E., Gude, J. A., Rotella, J., & Garrott, R. A. (2017). Security areas for elk during archery and rifle hunting seasons. Journal of Wildlife Management, 81(5), 778-791.Search in Google Scholar
Dorshorst, T., Hamill, J., Weir, G., & Holt, B. (2020). Archery’s lasting mark: a biomechanical analysis of archery. American Journal of Physical Anthropology (S69), 171.Search in Google Scholar
Gonzalez, C. C., Causer, J., Grey, M. J., Humphreys, G. W., Miall, R. C., & Williams, A. M. (2017). Exploring the quiet eye in archery using field- and laboratory-based tasks. Experimental Brain Research, 235(26), 2843-2855.Search in Google Scholar
Weckel, M., Rockwell, R. F., & Wincorn, A. (2011). The sustainability of controlled archery programs: the motivation and satisfaction of suburban hunters. Wildlife Society Bulletin, 35.Search in Google Scholar
Fang, S. H., & Jhih-Bang, O. U. (2019). The acute effects of nicotine on cognitive abilities and athletic performance in archery athletes. The FASEB Journal, 33(S1), 839.2-839.2.Search in Google Scholar
Ertan, H., & Simsek, D. (2014). The different release techniques in high level archery: a comparative case study. Clinics in Geriatric Medicine, 30(3), 469-92.Search in Google Scholar
Zhao, Z., Liu, X., & She, X. (2020). Artificial intelligence based tracking model for functional sports training goals in competitive sports. Journal of Intelligent and Fuzzy Systems, 40(1), 1-13.Search in Google Scholar
Guo, Q., & Li, B. (2020). Role of ai physical education based on application of functional sports training. Journal of Intelligent and Fuzzy Systems(2), 1-9.Search in Google Scholar
Huang, X., Li, H., Zhou, H., Krishnamoorthy, S., & Kadry, S. N. (2022). Activity classification and analysis during a sports training session using a fuzzy model. International Journal on Artificial Intelligence Tools.Search in Google Scholar
Tina, D., Bendix, J. J., & Gisela, S. (2017). Intelligent physical exercise training in a workplace setting improves muscle strength and musculoskeletal pain: a randomized controlled trial. Biomed Research International, 2017, 1-9.Search in Google Scholar
Pimenta, L. D., Massini, D. A., Santos, D. D., Vasconcelos, C. M. T., & Filho, D. M. P. (2019). Bone health, muscle strength and lean mass: relationships and exercise recommendations. Revista Brasileira de Medicina do Esporte, 25(3), 245-251.Search in Google Scholar
Champagne, A. A., Coverdale, N., Ruis, J. F., Mark, C., & Cook, D. J. (2020). Compromised resting cerebral metabolism after sport-related concussion: a calibrated mri study. Neurology, 95(20 Supplement 1), S15.1-S15.Search in Google Scholar