In order to develop athletes who can move optimally in multiple planes of motion, training should include elements that can challenge them in multiple planes while providing various resistance and proprioceptive challenges.
This article serves to educate people about the menstrual cycle in the tactical female population. It provides a framework for how to work through the phases of menstruation to increase training response, and thus, overall success in military training.
TSAC FacilitatorsExercise ScienceProgram designBasic Pathophysiology and Science of Health Status or Condition, Disorder, or Disease
CoachesExercise ScienceExercise TechniqueProgram designOrganization and AdministrationTesting and EvaluationClient Consultation|AssessmentSafetyBasic Pathophysiology and Science of Health Status or Condition, Disorder, or DiseaseProfessional Development
August 5, 2019by Ryan DiPanfilo, ATC/L, CSCS, Steven Candelaria, CSCS, RSCC, Daniel Fifer, CSCS, Michael Locasto, CSCS, RSCC, Derek Somerville, CSCS, Matthew Tenney, CSCS, RSCC, and Nate Shaw, CSCS, RSCC
Gain a thorough understanding of thoracic spine anatomy, the causes and effects of limited thoracic mobility, and the diverse strategies that may enhance thoracic mobility from the Arizona Diamondbacks Major League Baseball (MLB) Strength and Conditioning Team.
The purpose of this article is to present evidence for implementing wellness coaching practices for enhanced dissemination of knowledge and improved efficacy of lasting behavior change, positively affecting the service member’s fitness performance levels and decreasing risk of lifestyle disease development.
In this session from the 2015 NSCA National Conference, Nelson Ayotte—the Strength and Conditioning Coach for the St. Louis Blues National Hockey League (NHL) team—explains how to design and implement a specific energy systems program at the elite level. Ayotte demonstrates the characteristics of each of the three energy systems and their trainability, and explores how to understand the energy demands of a sport by analysis of its characteristics, competition intensity, and duration of efforts and recovery periods.
This article contains examples of how to periodize training programs to help aerobic endurance athletes reach their peak condition at the appropriate time of the year.
Bone tissue is “alive” and is a dynamic tissue that can respond to resistance training. In addition to the obvious effects of resistance training on muscle mass and strength, resistance training may lead to decreased risk for osteoporosis, fractures, and falls in later life.
The lack of specific training for tactical athletes during long deployments poses a significant issue. This article addresses mitigation strategies that can help them perform at their best and reduce the risk of injury.