Suo, B, Fu, F, Wu, K, Wang, J, Lu, Z, Yu, B, Zhi, R, Yang, F & Fu, W. (2026). Hollow-structured advanced footwear technology improves running economy through enhanced energy storage and return in sub-3-hour non-rearfoot strike marathon runners. Scandinavian Journal of Medicine & Science in Sports, 36 (4), e70280. Zugriff am 03.06.2026 unter https://doi.org/10.1111/sms.70280
APA-Zitierstil (7. Ausg.)Suo, B., Fu, F., Wu, K., Wang, J., Lu, Z., Yu, B., . . . Fu, W. (2026). Hollow-structured advanced footwear technology improves running economy through enhanced energy storage and return in sub-3-hour non-rearfoot strike marathon runners. Scandinavian Journal of Medicine & Science in Sports, 36(4), e70280.
Chicago-Zitierstil (17. Ausg.)Suo, B., F. Fu, K. Wu, J. Wang, Z. Lu, B. Yu, R. Zhi, F. Yang, und W. Fu. "Hollow-structured Advanced Footwear Technology Improves Running Economy Through Enhanced Energy Storage and Return in Sub-3-hour Non-rearfoot Strike Marathon Runners." Scandinavian Journal of Medicine & Science in Sports 36, no. 4 (2026): e70280.
MLA-Zitierstil (9. Ausg.)Suo, B., et al. "Hollow-structured Advanced Footwear Technology Improves Running Economy Through Enhanced Energy Storage and Return in Sub-3-hour Non-rearfoot Strike Marathon Runners." Scandinavian Journal of Medicine & Science in Sports, vol. 36, no. 4, 2026, p. e70280.