This infographic explains the acute and chronic responses of velocity-based training (VBT). This is the third and final infographic of a three-part series explaining the theory behind and application of VBT.
This excerpt from Developing Speed looks at how a fundamental understanding of the biomechanical principles that affect speed can assist coaches and athletes in developing running speed.
Personal trainersTSAC FacilitatorsCoachesExercise ScienceProgram design
Major League Assistant Strength and Conditioning Coach for the Texas Rangers, Eric McMahon, describes how he utilizes velocity-based training for professional baseball players and the benefits this technology brings to the players in this session from the NSCA’s 2019 Coaches Conference.
This article explains how training age, training frequency, limb length, height, and relative strength relate to concentric barbell velocities at varying loads.
Personal trainersTSAC FacilitatorsCoachesProgram design
In this lecture from the NSCA's 2014 Coaches Conference, Dr. Bryan Mann addresses velocity-based training (VBT) in sports. Dr. Mann defines VBT as "the use of various devices that measure displacement and time" as he describes each device and its ability.
Bert Sorin, President and Co-Owner of Sorinex Exercise Equipment, talks to the NSCA Head Strength and Conditioning Coach, Scott Caulfield, about Bert Sorin’s upbringing and his experience being a collegiate athlete, how Sorinex is contributing to the field, and how TSAC is continuing to grow and improve.
CoachesOrganization and AdministrationProfessional Development
This infographic briefly reviews the differences in sprint velocity and technique, including stride length and hip, knee, and ankle flexion during a 20-meter resisted sprint.
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.