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(357 found)

TSAC Report – July 2019 Research Column

March 21, 2020

Article Members Only

This article is part of a continuing series of tactical strength and conditioning (TSAC) research reviews. It is designed to bring awareness to new research findings of relevance to tactical strength and conditioning communities.

TSAC Facilitators Exercise Science Program design Firefighters Specialist Police Warrior Task Sleep Health Tactical Athlete

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

Quiz 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.

A Strength and Conditioning Framework for the Marathon Des Sables (Ultra-Endurance Event)

July 1, 2013

Article Members Only

Ultra-endurance performance is likely determined by quality of physical preparation, effective nutritional management, ability to cope with the environmental stressors, psychological resilience, and recovery capacity.

Coaches Exercise Science Program design long distance running Marathon Des Sables ultra marathon marathon training Ultraendurance training

Movement Analysis and Biomechanics for Endurance Sports

May 1, 2017

Article

Endurance sports are typically not thought of as highly technical endeavors, but proper movement during training and competition for endurance sports can affect both performance and health.

Coaches Exercise Science Exercise Technique Movement analysis gait analysis sports performance analysis muscular endurance exercises marathon running

Tracking Training Load and its Effect on Injury Risk and Fitness

September 9, 2019

Article Members Only

The aim of this article is to provide those working with tactical populations an introduction into tracking training load to mitigate injury risk while concurrently optimizing fitness.

TSAC Facilitators Program design Training Load Rate of Perceived Exertion Intensity External Load Internal Load

Acceleration vs. Maximum Speed

June 1, 2017

Article

Acceleration and maximum speed are terms used in speed development programs, and when developing a program, it is vital to differentiate between the two. This allows coaches to target their training to the capacity most important in their own sport.

Coaches Exercise Science kinetic select Acceleration speed strength and conditioning sport performance

Addressing Common Myths and Misconceptions About Youth Strength Training

September 13, 2024

Article Members Only

This article sets out to address and dispel these myths, offering evidence-based insights into the significance, safety, and multifaceted benefits of strength training for youth.

Personal trainers Exercise Science Program design Professional Development Youth Training LTAD Growth Flexibility Skill Development

TSAC Research Column – October 2021

June 3, 2022

Article Members Only

This article is part of a continuing series of tactical strength and conditioning (TSAC) research reviews. It is designed to bring awareness to new research findings of relevance to tactical strength and conditioning communities.

TSAC Facilitators Exercise Technique Program design Testing and Evaluation Firefighter 20-M Multistage Fitness Test Law Enforcement Fitness

Examining the Connection between Training the Core and Performance

November 26, 2021

Article Members Only

This article examines how training the core and performance are connected. This article seeks to help propose how to best use the literature to maximize understanding and use of the current concepts.

Coaches Exercise Technique Program design Core Strength Core Stability Star Excursion Balance Test

Standardizing the Use of Series Elastic Bands in Acceleration Training – Practical Strategies for the Coach

November 19, 2025

Article

This NSCA Coach article provides a proposes a framework for standardizing SEB resistance training based on principles of kinetic and potential energy. Visit NSCA online to read more on exercise science and sport performance.

Coaches Exercise Science Exercise Technique Program design Organization and Administration Testing and Evaluation Client Consultation|Assessment Safety Professional Development Force–Velocity Profile Series Elastic Bands (SEBs) Resisted Sprinting Sprint Mechanics Progressive Resistance Acceleration Training Potential Energy

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