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Notice: The NSCA website is scheduled to undergo system maintenance from 2:00 AM - 2:30 AM EST. During this time, there may be short service interruptions across the site and some parts of  the site may not be accessible. We apologize for any inconvenience while we work to improve the website experience and security.

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(502 found)

SCJ 46.5 The Relationship Between Various Jump Tests and Baseball Pitching Performance: A Brief Review

Quiz CATD 0.2

Multidirectional ground reaction forces (GRFs) and jump tests within baseball pitchers provide insight into athletic ability and coordination to produce lower-body force and power. Lower-body power is a biomechanical feature that denotes physiological capacity through dynamic and passive tissue stretch-shortening in transferring energy from the ground through the kinetic chain. Optimized lower-body power may lessen the magnitude of forces on the upper extremity. Insufficient lower-body power may create a greater risk of upper-body injury. Lower-body power and its relationship to ball velocity have been minimally investigated, yet some research points to a correlation between jumping ability and fastball velocity. Because pitching is unilateral, practitioners should consider unilateral jumps to determine the extent of bilateral asymmetry or stride to drive leg differences that can guide training to remediate deficiencies. The purposes of this brief review are to (a) examine factors that influence vertical jump performance among baseball players, (b) examine research on pitching multidirectional GRFs, and (c) examine literature concerning jump performances to baseball pitching performance. Collectively, this review can assist coaches and practitioners in lower-body power testing and training for baseball pitchers.

Position Statements

Other

Position statements are official statements of the NSCA on topics related to strength and conditioning and exercise science. All NSCA Position Statements are published in the Journal of Strength and Conditioning Research® and free to the public.

Increase Hip and Trunk Stability with Loaded Carries for Injury Prevention, Rehabilitation, and Performance

December 11, 2020

Article

The goal of this article is to understand contralateral and ipsilateral loading, how to set-up loaded carries, electromyography activity during exercises, and how to apply these exercises into the strength training program.

Coaches Program design Loaded Carries Core Strength Posture Contralateral Loading Ipsilateral Loading

Acceleration and Deceleration Mechanics

June 5, 2020

Article

This excerpt breaks down the optimal positions of the body during acceleration and deceleration.

Personal trainers TSAC Facilitators Coaches Exercise Technique Acceleration Deceleration Ground Reaction Forces Agility Change of Direction

Core Exercises for Ice Hockey

May 1, 2017

Article

Focusing on developing the core muscles in a strength and conditioning program for ice hockey players can improve performance of movements on the ice.

Coaches Exercise Science Program design Hockey training core conditioning ice hockey

Strength and Conditioning Certification Dedicated to Tactical Communities Approved for Post 911 GI Bill

Other

Colorado Springs, CO – Service members seeking a strength and conditioning certification to train their peers can now utilize the Post 911 GI Bill to obtain the only nationally-accredited certification dedicated to the challenges and demands specific to tactical communities.

Training the College-Level Volleyball Athlete

August 19, 2022

Article Members Only

The purpose of this article is to introduce the reader to methods of training collegiate volleyball athletes.

Coaches Volleyball Power Strength Training Cycles Program Design

Practical Methods for Strength Evaluation in Oncology Patients

Quiz CATD 0.2

Resistance training (RT) is a nonpharmacological complement to cancer treatments due to its effectiveness in attenuating sarcopenia, cardiotoxicity, fatigue, and emotional disorders common in oncology patients. To adequately program and evaluate the acute or long-term effects of this type of training, a proper evaluation of the patients’ strength levels is necessary. Strength evaluations traditionally applied to this population required reaching muscle or technical failure, which could increase their discomfort levels, risk of injury, or other complications associated with the disease. In this regard, this manuscript described different dynamic and isometric evaluations recommended to accurately and safely evaluate the strength of the oncology population. Concerning dynamic evaluations, the velocity based method is recommended to determine the capacity of the patient to apply force against maximal (i.e., 1 repetition maximum) and submaximal loads. The sit-to-stand or vertical jump tests are also proposed as alternatives to evaluate dynamic strength using body weight. For isometric assessments, the knee extension and handgrip tests could complement dynamic evaluations or replace them for patients with very low strength levels. Besides describing in depth the aforementioned evaluations, the current review proposes important methodological aspects to ensure their accurate, reliable, and safe implementation.

ELEVATE Award

Other

This award is a recognition given to NSCA members who have demonstrated exceptional commitment to and effectiveness in Equity, Leadership, Empowerment, Visibility, Access, Training, and Excellence within Strength and Conditioning.

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