This article breaks down youth training. To develop athleticism for youth, coaches should follow the C.O.R.E. principles: context in which to apply movement patterns, opportunities to develop proper movement, recognition of physical attributes required, and environments in which youth explore movement.
CoachesExercise TechniqueProgram designteaching athleticismyouth athleticismyouth trainingyouth athletic development
This article discusses using the principle of specificity as an important component in tactical training programs to enhance performance, decrease injuries, and improve functional longevity of a tactical athlete.
This article highlights the scientific evidence on exercises like the seated leg extension, leg curl, and adduction machines to highlight their potential benefits on enhanced performance and potentially reducing injury risk.
Personal trainersExercise ScienceProgram designSafetyPTQinjury riskseated leg extensionseated leg curladduction machinepersonal training
This article builds upon a previous article on the potential benefits personal trainers can offer clients by combining both cognitive and physical training.
Personal trainersExercise ScienceProgram designProfessional Development
This article looks to explain why law enforcement recruits have higher incidences of lower extremity bone stress responses and stress fractures. It also explores injury mitigation pathways to increase the graduation rates among law enforcement academies.
TSAC FacilitatorsProgram designBasic Pathophysiology and Science of Health Status or Condition and Disorder or DiseaseLaw EnforcementBone StressRecruitsInjury Mitigation
The purpose of this article is to provide fitness professionals with best practices on creating a program that uses red light therapy to aid in weight loss and weight management.
When considering applying advanced methods to affect and augment maximal power output, this excerpt from Developing Power explains three key points to consider.
Personal trainersTSAC FacilitatorsCoachesExercise TechniqueProgram designRate of Force DevelopmentMaximal Power OutputForce-Velocity RelationshipMuscular Power