Tsukuba, Japan—In soccer, the quality of the first touch is integral to shaping the subsequent actions of a player. Despite its importance, there is limited scientific evidence regarding which specific movement characteristics are associated with effective first-touch performance.
In this study, university soccer players performed a dynamic receive-to-pass task in which they received a pass while running and then immediately made the next pass. Using a 3D motion capture system, the researchers examined whole-body and ball kinematics and identified the biomechanical factors associated with shorter trap-to-pass times. The results showed that faster receive-to-pass transitions were associated with avoiding an excessively rapid foot approach immediately before ball contact, maintaining a more upright body posture when receiving the ball, and limiting excessive forward or upward rebound of the ball after the first touch.
The findings provide a new biomechanical perspective on the soccer "first touch"—the initial contact with the ball after receiving a pass—and objective evidence of movement characteristics associated with the rapid continuation of play. The study may help translate traditionally experience-based coaching concepts, such as "a good first touch," into measurable movement characteristics, with potential applications in player development, coaching, performance analysis, and future technologies using motion capture and artificial intelligence.