With this hands-on session, David Otey discusses the anatomy and biomechanics of rotational training for the everyday athlete. Also covered is how to structure implementation of rotational training and establish parameters for any client.
Personal trainersExercise ScienceExercise TechniqueProgram design
In this hands-on session from the 2018 Tactical Annual Training, Joel Raether, owner of Authentic Performance, discusses strategies and exercises he utilizes to improve trunk performance and resiliency, while subsequently demonstrating his progressions and regressions for these exercises.
The exerciser with 8 to 12 months of training experience can begin to include exercise complexes that combine trunk movement patterns with multijoint movements. Single-plane and multiplane movements can be performed using both open- and closed-chain exercises.
Dr. Josh Secomb, lecturer in exercise and sport science (strength and conditioning) at the University of Newcastle, talks to the NSCA Coaching and Sport Science Program Manager, Eric McMahon, about being a self-aware and authentic coach. Topics under discussion include finding new areas to employ different skillsets as practitioners, the value of training progressions and understanding your athletes, and his unique opportunity to research and coach surfers.
Find Dr. Secomb on Twitter: @37Seco | Find Eric on Instagram: @ericmcmahoncscs or Twitter: @ericmcmahoncscs
This article is the third installment of a four-part series on stabilization in weight training. It covers how to train trunk stability and how to decrease the dominance of the extension/compression stabilizing strategy (ECSS) that is often perpetuated during training.
This Personal Trainers Quarterly article examines a client's ability to maintain pelvic and trunk stability during a dynamic fitness screening. Visit NSCA online to read more on corrective exercises, health, and fitness.
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Strength and conditioning coaches that temper their posterior chain exercises with some threshold training and specific trunk exercises designed to break the extension/compression stabilization strategy (ECSS) to restore proper stabilizing strategies may find their athletes will move better, get injured less, and actually perform better.