Understanding how the body adapts to the overload of aerobic exercise is critical to designing effective exercise training programs, monitoring exercise responses and progress, and assessing training outcomes.
Personal trainersCoachesExercise ScienceTesting and EvaluationOvertrainingoverreachinghow to avoid overtrainingdetrainingovertraining syndrome
This book excerpt provides examples of quickness drills that may improve the ability to identify a specific stimulus and to respond quickly and appropriately.
CoachesExercise TechniqueProgram designAgilityball drops drillshuffle reaction ball drillwave drillreactive sprint and backpedal drillreactive gear drilldrills to improve quicknesshow to improve reaction timesquickness
Deceleration in court and field sports, such as football and soccer, is an important component of speed and agility. This book excerpt looks at how to train for effective deceleration.
CoachesExercise ScienceExercise TechniqueDeceleration techniquespeed trainingspeed training drillsfootball speed trainingsoccer speed training
Isolated muscle training methods do not necessarily transfer to better sports performance, because technique as well as strength contributes to successful performance. Resistance training for dynamic sports must involve ground-based movements that incorporate the coordinated stabilizing and dynamic functions of multiple muscles.
CoachesExercise Sciencecore trainingkinetic selectnervous systemstrength and conditioning
Two factors that determine running speed are stride cadence and stride length. Because athletes propel themselves forward only when their foot is in contact with the ground, the stance phase of the running stride should be the focus of speed enhancement programs.
CoachesExercise ScienceMechanics of runninghow to run fasterspeed trainingrunning mechanics
Line drills can be an excellent way for athletes to improve their footwork, speed, and coordination. This article contains examples of several easy-to-implement line drills.
Supplements that claim to boost nitric oxide have not been proven to be all that effective since the actual conversion in the blood cell is rather complicated and requires oxygen, which is usually in short supply during exercise or at high altitude. So how does an athlete boost their nitric oxide production?