This study analysed the first stance phase joint kinetics of three elite sprinters to improve the understanding of technique and investigate how individual differences in technique could influence the resulting levels of performance. Force (1000 Hz) and video (200 Hz) data were collected and resultant moments, power and work at the stance leg metatarsal-phalangeal (MTP), ankle, knee and hip joints were calculated. The MTP and ankle joints both exhibited resultant plantarflexor moments throughout stance. Whilst the ankle joint generated up to four times more energy than it absorbed, the MTP joint was primarily an energy absorber. Knee extensor resultant moments and power were produced throughout the majority of stance, and the best-performin...
The aim of this study was to analyse lower limb joint moments, powers and electromyography patterns ...
This study aimed to develop insight into the intra-limb kinematic strategies underpinning athlete- a...
To obtain more in-depth insights in biomechanical factors determining performance during sprint runn...
This study analysed the first stance phase joint kinetics of three elite sprinters to improve the un...
Previous studies have analysed lower limb joint kinetics during sprint performance, but not addresse...
The purpose of this study was to clarify the differences in the three-dimensional joint moments of l...
Two-dimensional analyses of sprint kinetics are commonly undertaken but often ignore the metatarsalp...
This study investigated lower-limb kinematics to explain the techniques used to achieve high levels ...
The effect of variations in joint kinetics on sprint performance in individual athletes is not yet k...
Introduction and Objectives: Sprint running can be divided in several distinct phases including the ...
The effect of variations in joint kinetics on step characteristics and velocity is not yet known. To...
The purpose of the study was to quantify and compare sprint mechanics of elite female sprinters (N=9...
The purposes of this study were to identify differences of the three-dimensional joint kinetics betw...
The aim of this study was to investigate the relationship between internal and external kinetics in ...
The aim of this study was to analyse lower limb joint moments, powers and electromyography patterns ...
The aim of this study was to analyse lower limb joint moments, powers and electromyography patterns ...
This study aimed to develop insight into the intra-limb kinematic strategies underpinning athlete- a...
To obtain more in-depth insights in biomechanical factors determining performance during sprint runn...
This study analysed the first stance phase joint kinetics of three elite sprinters to improve the un...
Previous studies have analysed lower limb joint kinetics during sprint performance, but not addresse...
The purpose of this study was to clarify the differences in the three-dimensional joint moments of l...
Two-dimensional analyses of sprint kinetics are commonly undertaken but often ignore the metatarsalp...
This study investigated lower-limb kinematics to explain the techniques used to achieve high levels ...
The effect of variations in joint kinetics on sprint performance in individual athletes is not yet k...
Introduction and Objectives: Sprint running can be divided in several distinct phases including the ...
The effect of variations in joint kinetics on step characteristics and velocity is not yet known. To...
The purpose of the study was to quantify and compare sprint mechanics of elite female sprinters (N=9...
The purposes of this study were to identify differences of the three-dimensional joint kinetics betw...
The aim of this study was to investigate the relationship between internal and external kinetics in ...
The aim of this study was to analyse lower limb joint moments, powers and electromyography patterns ...
The aim of this study was to analyse lower limb joint moments, powers and electromyography patterns ...
This study aimed to develop insight into the intra-limb kinematic strategies underpinning athlete- a...
To obtain more in-depth insights in biomechanical factors determining performance during sprint runn...