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1. The Influence of "Super-Shoes" and Foot Strike Pattern onMetabolic Cost and Joint Mechanics in Competitive Female Runners.

2. Relationship Between Advanced Footwear Technology Longitudinal Bending Stiffness and Energy Cost of Running.

3. Influence of different midsole foam in advanced footwear technology use on running economy and biomechanics in trained runners.

4. Influence of Running Shoe Longitudinal Bending Stiffness on Running Economy and Performance in Trained and National Level Runners.

5. Effects of course design (curves and elevation undulations) on marathon running performance: a comparison of Breaking 2 in Monza and the INEOS 1:59 Challenge in Vienna.

6. Muscle fibre typology affects whole‐body metabolic rate during isolated muscle contractions and human locomotion.

7. Reflecting on Eliud Kipchoge’s Marathon World Record: An Update to Our Model of Cooperative Drafting and Its Potential for a Sub-2-Hour Performance.

8. The Biomechanics of Competitive Male Runners in Three Marathon Racing Shoes: A Randomized Crossover Study.

9. Modeling the Benefits of Cooperative Drafting: Is There an Optimal Strategy to Facilitate a Sub-2-Hour Marathon Performance?

11. A Comparison of the Energetic Cost of Running in Marathon Racing Shoes.

12. Freezing-related perception deficits of asymmetrical walking in Parkinson’s disease.

13. Quick foot placement adjustments during gait are less accurate in individuals with focal cerebellar lesions.

14. Changing relative crank angle increases the metabolic cost of leg cycling.

15. How Biomechanical Improvements in Running Economy Could Break the 2-hour Marathon Barrier.

16. Quick foot placement adjustments during gait are less accurate in individuals with focal cerebellar lesions.

17. Altered Running Economy Directly Translates to Altered Distance-Running Performance.

19. Effects of aging and dual tasking on step adjustments to perturbations in visually cued walking.

20. Quick foot placement adjustments during gait: direction matters.

21. Adaptation and aftereffects of split-belt walking in cerebellar lesion patients.

22. Gait asymmetry during early split-belt walking is related to perception of belt speed difference.

24. Cutaneous reflex modulation and self-induced reflex attenuation in cerebellar patients.

25. Toward new sensitive measures to evaluate gait stability in focal cerebellar lesion patients.

26. GAIT PARAMETERS AFFECTING THE PERCEPTION THRESHOLD OF LOCOMOTOR SYMMETRY: COMMENT ON LAUZIÈRE, ET AL . (2014)

27. Sensorimotor recalibration during split-belt walking: task-specific and multisensory?

28. Sensorimotor recalibration during split-belt walking: task-specific and multisensory?

29. Response inhibition during avoidance of virtual obstacles while walking.

30. Selective bilateral activation of leg muscles after cutaneous nerve stimulation during backward walking.

31. Everesting: cycling the elevation of the tallest mountain on Earth.

32. Triceps surae muscle force potential and force demand shift with altering stride frequency in running.

33. Stride length asymmetry in split-belt locomotion.

34. Correction to: A Comparison of the Energetic Cost of Running in Marathon Racing Shoes.

35. Assessing the validity of the zero-velocity update method for sprinting speeds.

36. Changing Stride Frequency Alters Average Joint Power and Power Distributions during Ground Contact and Leg Swing in Running.

38. Is Action-Perception Coupling Improved with Delay in Patients with Focal Cerebellar Lesions?

40. Asymmetric shoe height induces reactive changes in gait kinematics but not kinetics in healthy young adults.

42. Different neural substrates for precision stepping and fast online step adjustments in youth.

44. Dynamic visual acuity during asymmetric walking.

45. Can We Quantify the Benefits of "Super Spikes" in Track Running?

48. Coordinating arms and legs on a hybrid rehabilitation tricycle: the metabolic benefit of asymmetrical compared to symmetrical arm movements.

50. The Fallacy of Single Trials: The Need for Multiple Trials in Assessing Running Economy Responses in Advanced Footwear Technology.

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