Development of grip strength is often overlooked in traditional resistance training programs, but small program adjustments that target grip strength can be of benefit athletes.
In this lecture from the NSCA's 2014 Coaches Conference, Coach Cal Dietz reviews the concept of triphasic training, and introduces a number of new, advanced methods.
Cal Dietz, Head Olympic Strength and Conditioning Coach for the University of Minnesota, explains how training is a process that takes time. He shares his insight into the most applicable adaptation and the most effective applications for tactical performance at the 2019 NSCA Tactical Annual Training.
Former Lead Strength and Conditioning Coach for Edinburgh Rugby, Ashley Jones, discusses ways to simplify a complex world of programming. Jones lays a foundation of how to construct training programs that relate to the current training environment and how to develop a taxonomy of exercise variations and training methods to assist coaches with the “why,” “when,” and “how” of programming.
CoachesProgram designProgram DesignOrder of ExerciseMethodsExercise SelectionSplit Routines
From the 2019 Tactical Annual Training, Matt Thompson, explains the principles that have helped guide his program design process and how coaches can utilize similar principles to help filter systems and methods to create a more effective training program.
TSAC FacilitatorsProgram designProfessional DevelopmentProgram DesignAthlete CenteredTSAC-FJob TasksEnergy Systems
Gain insight into the interactions between strength, power, speed, and agility for soccer players. Also, learn basic programing guidelines that adhere to current research.
CoachesExercise TechniqueProgram designexercise programmingsoccer drillsstrength training for soccersoccer trainingspeedsoccer
In this 2018 coaches conference video Todd Hamer describes his experience working with collegiate football players, and his methods for targeting appropriate energy systems to increase athletic performance in speed and conditioning.
CoachesExercise ScienceProgram designSpeed TrainingConditioningFootballEnergy Systems
Eccentric resistance training has been shown to elicit beneficial effects on performance and injury prevention in sports because of its specific muscular and neural adaptations. Within the different methods used to generate eccentric overload, flywheel eccentric training has gained interest in recent years because of its advantages over other methods such as its portability, the ample exercise variety it allows and its accommodated resistance. Only a limited number of studies that use flywheel devices provide enough evidence to support the presence of eccentric overload. There is limited guidance on the practical implementation of flywheel eccentric training in the current literature. In this article, we provide literature to support the use of flywheel eccentric training and present practical guidelines to develop exercises that allow eccentric overload.