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Notice: The NSCA website is scheduled to undergo system maintenance from 12:00 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.
The physiological response to breath holding includes bradycardia and peripheral vasoconstriction, which contrasts with that of exercise which includes tachycardia and peripheral vasodilation. This raises the question as to what the physiological response is to breath holding during exercise. During low-intensity exercise, the breath holding response of bradycardia and peripheral vasoconstriction prevails over the exercise response of tachycardia and peripheral vasodilation, but nevertheless the exercise may be sustained. Due to the lack of availability of extrinsic oxygen (O 2 ) from the atmosphere during breath holding, the energy demands can be met by increased reliance on intrinsic O 2 stores (i.e., O 2 that was in the body before the breath hold) via increased O 2 extraction at the muscle compared with exercise while breathing, or increased contributions from anaerobic energy systems. During high intensity exercise of short duration, the exercise response may prevail over the breath holding response due to the increased parasympathetic withdrawal and sympathetic drive of higher intensity exercise. If breath holding during high-intensity exercise was sustained for long enough, the breath holding response may eventually overcome the exercise response, although this may be difficult due to the inverse relationship between exercise intensity and breath hold duration.
This TSAC research column explores how operational exposure and experience shape stress responses in military personnel. Visit NSCA online to learn more about tactical performance and exercise research.
TSAC FacilitatorsExercise ScienceProgram designOrganization and AdministrationTesting and EvaluationClient Consultation|AssessmentSafetyEmergency ProceduresBasic Pathophysiology and Science of Health Status or Condition and Disorder or DiseaseProfessional DevelopmentPsychophysiological StressCognitive ResilienceOccupational ReadinessTactical PerformanceCognitive Control MechanismsStress Adaptation
This TSAC Report article discusses incorporating stress inoculation to help first responders reduce stress response and expedite recovery. Visit NSCA online to learn more about exercise research.
TSAC FacilitatorsExercise ScienceExercise TechniqueProgram designOrganization and AdministrationTesting and EvaluationSafetyBasic Pathophysiology and Science of Health Status or Condition and Disorder or DiseaseProfessional DevelopmentFirst RespondersPhysiological Stress ResponseExercise ResearchLive-Fire DrillsOccupational FitnessTactical PerformanceFire FightersStress Management
Law enforcement officers can experience psychological and physical stress in most of every part of their day, even starting from the first day of the academy. This article looks at Heart Rate Response in relation to stress, and interventions to manage stress through the academy.
This article seeks to help personal trainers understand the physiological effects of stress and helpful ways they can drive positive changes for their clients through exercise.
Personal trainersExercise ScienceProgram designClient Consultation|AssessmentStressAllostatic LoadCortisolPsychosocial IndexHomeostasis
This article seeks to explain the differences between males and females in training and adaptations, as well as provide actionable guidelines to improve performance.
This article discusses how first responder organizations can optimize their training programs through scientific techniques, including the measurement of training load.