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(243 found)

Developing Powerful Athletes, Part 2: Practical Applications

June 26, 2020

Article

This infographic discusses the practical application of training power across a variety of loads to encompass all motor skills in any one sport.

Personal trainers TSAC Facilitators Coaches Exercise Science Program design Infographics Strength Training Rate of Force Development Force Velocity

Blood Flow Restriction Training and the Physique Athlete

August 21, 2020

Article

This infographic provides a brief overview of the practical, research-based application to maximizing muscle size through blood flow restriction training.

Personal trainers TSAC Facilitators Coaches Program design Infographics Blood Flow Restriction Limb Occlusion Pressure

Assessing Group-Based Changes in High-Performance Sport. Part 2: Effect Sizes and Embracing Uncertainty through Confidence Intervals

January 28, 2022

Article

The second in a two-part series, this infographic explains effect size, significance, and practical application through confidence intervals.

Coaches Testing and Evaluation Professional Development Infographics Effect Size Research Standardized Mean Difference Correlation Coefficient Odds Ratio

Taking Research to Practical Application

January 28, 2013

Video Members Only

The NSCA provides career-focused benefit videos designed to help members gain expert insight, knowledge and tips to help further their careers.Carwyn Sharp presents, "Taking Research to Practical Application"

Personal trainers Coaches Exercise Science Program design Professional Development Research Practical Application Fitness and Coaching Professionals Strength and Conditioning Personal Training Training Considerations

Essentials of Heart Rate Variability for Personal Trainers

October 31, 2015

Video

Heart rate variability (HRV) testing is at the forefront of a wave of cutting-edge assessment tools that are becoming available to the personal trainer. In this session from the 2015 NSCA Personal Trainers Conference, Carmine Grieco provides an overview of the physiological background and dynamics of HRV, including the most current supportive evidence, with an emphasis on the practical application for personal trainers.

Personal trainers Exercise Science Testing and Evaluation Client Consultation|Assessment Personal Training Heart Rate Variability HRV Assessment Tools

CSCS Study Materials

Other

The CSCS examination reflects the most current and accepted KSA standards within the health and fitness industries. Further, the examinations may be developed from references that may be in addition to resources listed below. NSCA materials survey important content area, but are not a comprehensive study of the Exercise Science.

SCJ 46.6 Practical Application of Respiratory Muscle Training in Endurance Sports

Quiz CATD 0.2

Since traditional sport-specific training or exercise programs do not create enough stimulus to improve the function of the respiratory muscles, the rationale to introduce respiratory muscle training (RMT) emerged. RMT is associated with improved endurance performance and pulmonary function, and it reduced respiratory fatigue, perceived exertion, or breathlessness. The purpose of this article is to provide coaches with tools to select the appropriate form of RMT in the context of the athletes’ needs, using appropriate methods, techniques, devices, and testing protocols. The video abstract is presented in Supplemental Digital Content as SDC 1

Defining, Measuring, and Monitoring Resilience for the Tactical Professional: Part 3—Heart Rate Variability Application Guide for Tactical Professionals

October 14, 2022

Article Members Only

The third and final article in this series will introduce the practical and technical elements of heart rate variability (HRV) monitoring in greater depth and detail.

TSAC Facilitators Exercise Science Program design Heart Rate Variability Time Domain ECG

SCJ 47.4 The Rationale and Application of Eccentric-Based Exercises in Sports: Practical Suggestions for Its Implementation

CATD 0.2

Considering the great popularity of eccentric-based training, the purpose of this review is to first provide the scientific rationale for its use; second, summarize the eccentric-based training modalities that can be used; and finally, offer practical recommendations on how to implement eccentricbased modalities to enhance sports performance. The molecular and neural mechanisms underlying eccentric actions are partially distinct from those of concentric and isometric actions. During eccentric actions, theories suggest a strain-induced modulation of actin-myosin interactions at the crossbridge level, activation of structural protein titin, and winding of titin on actin. Eccentric acute physiological responses differ from concentric exercise responses, including variations in neuromuscular, metabolic, hormonal, and anabolic signaling. Eccentric training elicits greater improvements in muscle strength, power, and stretch-shortening cycle function compared with concentric-only or traditional resistance training. Therefore, eccentric-based training can lead to unique neuromuscular (e.g., improved coordination of motor units) and morphological (e.g., increased muscle fascicle length and enhanced distal cross-sectional area) adaptations that could play a key role in sport performance. Practitioners may implement eccentric exercises with external loads, fully eccentric-based exercises (e.g., Nordic hamstring curl), accentuated eccentric loading, flywheel resistance exercise, and plyometrics to develop specific physical adaptations in line with their goals. Eccentric work (e.g., for hamstrings) can be obtained during other exercises such as downhill running tasks, decelerations, and sprinting activities. Practitioners need to be aware that no single “silver bullet” training modality exists; consequently, practitioners should use a combination of eccentric-based training approaches with their athletes to obtain the desired adaptations.

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