This Personal Training Quarterly article presents alternative ways of teaching the squat technique. Visit NSCA online to read more on exercise science, health, and fitness.
Personal trainersExercise ScienceExercise TechniqueTesting and EvaluationClient Consultation|AssessmentProfessional Development
This Personal Training Quarterly article explores the science behind strength training’s effects on mental health and strategies for integrating wellness programming. Visit NSCA online to read more on fitness news and exercise research.
Exercise ScienceProgram designOrganization and AdministrationTesting and EvaluationClient Consultation|AssessmentSafetyBasic Pathophysiology and Science of Health Status or Condition, Disorder, or DiseaseProfessional Development
Learn about programming tactics you can use for your strength/power athletes who are preparing for the 2018 Olympic Games. Brad DeWeese, coach for several Team USA athletes, shares his first-hand experience preparing athletes for the Olympic Games in this session from the NSCA’s 2018 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 Bridge video, Loren Landow, from Landow Performance, demonstrates exercises and techniques of various plyometric movements for anterior cruciate ligament (ACL) strength and injury prevention.
Learn about the 10 pillars of successful long-term athletic development, summarizing the key recommendations detailed within the National Strength and Conditioning Association’s (NSCA) Position Statement on Long-Term Athletic Development (LTAD).
Personal trainersCoachesExercise ScienceProgram design
The purpose of this article is to present and discuss the phases of the pull that precede the power position, as well as present some suggestions for how to coach these positions.
Learn about how a potentiating stimulus can induce a postactivation potentiation (PAP) response in vertical jump, sprint, and upper-body performance, as well as the optimal structure of a strength-power potentiating complex.