Although most resources on program design review the foundational scientific principles of training, they often fail to provide practical strategies that strength and conditioning professionals need in order to apply these principles successfully. To help bridge the gap between science and application, this article provides a simple and practical, step-by-step system for applying the scientific principles of training into the program design process.
This article proposes that all resistance training exercises can be classified as either “specific” or “general.” How to classify each exercise type and the unique benefits they offer is explained.
Personal trainersExercise ScienceExercise TechniqueProgram design
Manual resistance training (MRT) can be an effective, low-cost, and easy-to-perform training modality. It can be performed in many situations regardless of space, equipment availability, and performance level.
Correct spinal alignment is key to many lifts and can help prevent back pain form everyday activities. This is an overview of the anatomy and methods to help identify and correct common postural imbalances.
Personal trainersProgram designTesting and EvaluationBasic Pathophysiology and Science of Health Status or Condition, Disorder, or Disease
Tendinopathy is a pathological condition that occurs when a tendon is repeatedly injured and degenerately breaks down. Specific exercise programming may help prevent tendinitis from occurring.
Personal trainersProgram designSafetyBasic Pathophysiology and Science of Health Status or Condition, Disorder, or Disease
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