This article covers the anatomy and mechanics of spinal stabilization and how to properly brace for both maximal and sub-maximal lifts. Because of the forces that are generated by, and transmitted through, the body during resistance training, having a sound understanding of stabilization is paramount for safe and effective training.
A major concern with balance and joint-stabilization exercises is to avoid potentially dangerous movements that depend on the preparedness of the athlete or patient and on the state of the healing tissue. Learn about progressions that minimize risk to the athlete or patient.
CoachesExercise ScienceProgram designbalance exercisesjoint-stabilization exercisesstrength and conditioninginjury avoidanceprehabilitation
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.
Squatting may be commonplace in the weight room, but proper execution of this great exercise is difficult. Strength and conditioning coaches will need to properly select exercises and cue their athletes in a way that not only allows for a proper stabilizing strategy to occur, but promotes it.
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.
As a podiatrist, human movement specialist, and worldwide leader in barefoot science and rehabilitation, Emily Splichal has developed a keen eye for movement dysfunction and neuromuscular control during gait. In this session from the NSCA’s 2018 National Conference, Splichal discusses reflexive stabilization, macro- and micro-stability and how it relates to injury risk, and a ground-up approach to activation.
Personal trainersCoachesExercise ScienceExercise TechniqueClient Consultation|AssessmentBarefootActivationStabilizationSomatosensoryFascia
Static and dynamic conditioning of the core musculature is important in activities of daily living and in sport. This book excerpt includes sample static exercises to strengthen the core muscles responsible for stabilization against, or movement through, the four basic movement patterns.
This article provides an overview of the scientific evidence comparing specific motor control exercise intervention to using a more general exercise approach, and concludes by discussing the practical implications for strength and conditioning professionals from an exercise programming perspective.
Personal trainersExercise TechniqueProgram designstrength and conditioningpersonal trainingmotor control exerciselow back pain
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.
CoachesExercise TechniqueProgram designCore StrengthCore StabilityStar Excursion Balance Test
As rotation, power, and rotational power are all common pieces of everyday life, it is important to train for efficiency in the movements. This article addresses the specific approaches rotational training can have in an individual’s strength program to address core integrity, synergistic muscular systems, and overall athletic capabilities as it relates to aging.
Personal trainersCoachesExercise TechniqueProgram designPTQrotational powercore trainingpersonal training