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Breine B., Malcolm P., Galle S. et al., Running speedinduced changes in foot contact pattern influence impact loading rate, European Journal of Sport Science, 2019, 19 (6), 774–783.Search in Google Scholar
Breine B., Malcolm P., Van Caekenberghe I. et al., Initial foot contact and related kinematics affect impact loading rate in running, Journal of Sports Sciences, 2017, 35 (15), 1556–1564.Search in Google Scholar
Ceyssens L., Vanelderen R., Barton C. et al., Biomechanical risk factors associated with running-related injuries: a systematic review, Sports Medicine, 2019, 49, 1095–1115.Search in Google Scholar
Chen C.F., Chuang M.H., Wu H.J., Joint energy and shot mechanical energy of glide-style shot put, Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology, 2022, DOI: 10.1177/17543371221123168.Search in Google Scholar
Chen C.F., Wang S.F., Shen X.X. et al. Kinematic analysis of countermovement jump performance in response to immediate neuromuscular electrical stimulation, Mathematical Biosciences and Engineering, 2023, 20 (9), 16031–16042.Search in Google Scholar
Chen C.F., Wu H.J., Liu C. et al., Kinematics Analysis of Male Runners via Forefoot and Rearfoot Strike Strategies: A Preliminary Study, Int. J. Environ. Res. Public Health, 2022, 19, 15924, DOI: 10.3390/ijerph192315924.Search in Google Scholar
Chen C.F., Wu H.J., The Effect of an 8-Week Rope Skipping Intervention on Standing Long Jump Performance, Int. J. Environ. Res. Public Health., 2022, 19, 8472, DOI: 10.3390/ijerph19148472.Search in Google Scholar
Chen C.F., Wu H.J., Yang Z.S. et al., Motion Analysis for Jumping Discus Throwing Correction, Int. J. Environ. Res. Public Health., 2021, 18, 13414, DOI: 10.3390/ijerph182413414.Search in Google Scholar
Clark K.P., Determinants of top speed sprinting: Minimum requirements for maximum velocity, Applied Sciences, 2022, 12 (16), 8289.Search in Google Scholar
Cohen J., Statistical Power Analysis for the Behavioral Sciences, 2nd ed., Hillsdale N.J. (ed.), Lawrence Erlbaum Associates, New York, NY, USA, 1988.Search in Google Scholar
Da Rosa R.G., Oliveira H.B., Gomeñuka N.A. et al., Landing-takeoff asymmetries applied to running mechanics: a new perspective for performance, Frontiers in Physiology, 2019, 10, 415.Search in Google Scholar
Daoud A.I., Geissler G.J., Wang F. et al., Foot strike and injury rates in endurance runners: a retrospective study, Medicine and Science in Sports and Exercise, 2012, 44 (7), 1325–1334, DOI: 10.1249/MSS.0b013e3182465115.Search in Google Scholar
De Almeida M.O., Saragiotto B.T., Yamato T.P. et al., Is the rearfoot pattern the most frequently foot strike pattern among recreational shod distance runners?, Physical Therapy in Sport, 2015, 16 (1), 29–33, DOI: 10.1016/j.ptsp.2014.02.005.Search in Google Scholar
De Ruiter C.J., Van Oeveren B., Francke A. et al., Running speed can be predicted from foot contact time during outdoor over ground running, PLoS ONE, 2016, 11 (9), e0163023.Search in Google Scholar
Folland J.P., Allen S.J., Black M.I. et al., Running technique is an important component of running economy and performance, Medicine and Science in Sports and Exercise, 2017, 49 (7), 1412–1423.Search in Google Scholar
García-Pinillos F., Cartón-Llorente A., Jaén-Carrillo D. et al., Does fatigue alter step characteristics and stiffness during running?, Gait and Posture, 2020, 76, 259–269.Search in Google Scholar
García-Pinillos F., Latorre-Román P.Á., Ramírez-Campillo R. et al., How does the slope gradient affect spatiotemporal parameters during running? Influence of athletic level and vertical and leg stiffness, Gait and Posture, 2019, 68, 72–77.Search in Google Scholar
Ho W.H., Shiang T.Y., Lee C.C. et al., Body segment parameters of young Chinese mean determined with Magnetic Resonance Imaging, Med. Sci. Sports Exerc., 2013, 45, 1759–1766.Search in Google Scholar
Jiang X., Chen H., Sun D., Baker J.S., Gu Y., Running speed does not influence the asymmetry of kinematic variables of the lower limb joints in novice runners, Acta Bioeng. Biomech., 2021, 23 (1), 69–81.Search in Google Scholar
Kirmizi M., Sengul Y.S., Angin S., The effects of gait speed on plantar pressure variables in individuals with normal foot posture and flatfoot, Acta Bioeng. Biomech., 2020, 22 (3), 161–168.Search in Google Scholar
Landers G.J., Blanksby B.A., Ackland T.R., The relationship between stride rates, lengths, and body size and their effect on elite triathletes’ running performance during competition, International Journal of Exercise Science, 2011, 4 (4), 238–246.Search in Google Scholar
Lussiana T., Patoz A., Gindre C. et al., The implications of time on the ground on running economy: less is not always better, Journal of Experimental Biology, 2019, 222 (6), 192047.Search in Google Scholar
Mason R., Pearson L.T., Barry G. et al., Wearables for running gait analysis: A systematic review, Sports Medicine, 2023, 53 (1), 241–268.Search in Google Scholar
Matias A.B., Caravaggi P., Taddei U.T. et al., Rearfoot, midfoot, and forefoot motion in naturally forefoot and rearfoot strike runners during treadmill running, Applied Sciences, 2020, 10 (21), 7811.Search in Google Scholar
Meyer F., Falbriard M., Aminian K. et al., Vertical and Leg stiffness modeling during running: effect of speed and incline, International Journal of Sports Medicine, 2023, 44 (9), 673–679, DOI: 10.1055/a-2044-4805.Search in Google Scholar
Moore I.S., Is there an economical running technique? a review of modifiable biomechanical factors affecting running economy, Sport Medicine, 2016, 46, 793–807.Search in Google Scholar
Mooses M., Haile D.W., Ojiambo R. et al., Shorter ground contact time and better running economy: evidence from female Kenyan runners, The Journal of Strength and Conditioning Research, 2021, 35 (2), 481–486.Search in Google Scholar
Morin J.B., Dalleau G., Kyröläinen H. et al., A simple method for measuring stiffness during running, Journal of Applied Biomechanics, 2005, 21 (2), 167–180.Search in Google Scholar
Ogueta-Alday A., Morante J.C., Gomez-Molina J. et al., Similarities and differences among half-marathon runners according to their performance level, PLoS ONE, 2018, 13 (1), e0191688.Search in Google Scholar
Preece S.J., Bramah C., Mason D., The biomechanical characteristics of high-performance endurance running, European Journal of Sport Science, 2019, 19 (6), 784–792.Search in Google Scholar
Richardson J.L., Effect of step rate on foot strike pattern and running economy in novice runners, In All Graduate Plan B and Other Reports, Utah State University: Logan, UT, USA, 2013, 287.Search in Google Scholar
Santos-Concejero J., Granados C., Irazusta J. et al., Differences in ground contact time explain the less efficient running economy in north african runners, Biology of Sport, 2013, 30 (3), 181–187.Search in Google Scholar
Santos-Concejero J., Granados C., Irazusta J. et al., Influence of the biomechanical variables of the gait cycle in running economy, Revista Internacional de Ciencias del Deporte, 2014, 36 (10), 96–108.Search in Google Scholar
Santos-Concejero J., Tam N., Granados C. et al., Interaction effects of stride angle and strike pattern on running economy, International Journal of Sport Medicine, 2014, 35 (13), 1118–1123.Search in Google Scholar
Santos-Concejero J., Tam N., Granados C. et al., Stride angle as a novel indicator of running economy in well-trained runners, Journal of Strength and Conditoning Research, 2014, 28 (7), 1889–1895.Search in Google Scholar
Struzik A., Karamanidis K., Lorimer A. et al., Application of leg, vertical, and joint stiffness in running performance: A literature overview, Applied Bionics and Biomech, 2021, 9914278, DOI: 10.1155/2021/9914278.Search in Google Scholar
Van Oeveren B.T., De Ruiter C.J., Beek P.J. et al., The biomechanics of running and running styles: a synthesis, Sports Biomechanics, 2021, 4, 1–39, DOI: 10.1080/14763141. 2021.1873411.Search in Google Scholar
Wei Z., Zhang Z., Jiang J. et al., Comparison of plantar loads among runners with different strike patterns, Journal of Sports Sciences, 2019, 37 (18), 2152–2158.Search in Google Scholar
Xiang L., Gu Y., Wang A., Mei Q., Yu P., Shim V., Fernandez J., Effect of foot pronation during distance running on the lower limb impact acceleration and dynamic stability, Acta Bioeng. Biomech., 2022, 24 (4), 21–30.Search in Google Scholar
Zhou W., Qi Y., Liu M., Hsiao C., Wang L., Effect of foot strike patterns and cutting angles on knee kinematics and kinetics during side-cutting maneuvers, Acta Bioeng. Biomech., 2023, 25 (1), 27–34.Search in Google Scholar