Respiratory Chemosensitivity and Resistive Load Sensation Influences on Ventilatory Control during Exercise

Abstract

This study examined the effect of added inspiratory resistance (R1) to determine the relationship between respiratory sensations and hypercapnic responsiveness to exercise breathing patterns and work performance. Mild R1 (5 cm H2O l sec) did not alter peak oxygen uptake, peak power output, or steady- state submaximal work duration. During progressive intensity exercise, changes in the pattern of breathing occurred with R1 whereas, breathing cycle timing components were relatively unchanged. During the submaximal steady-state exercise, R1 decreased mean inspiratory flow but prolonged the duty cycle thus maintaining minute ventilation. Exercise minute ventilation was strongly correlated to subjects' ventilatory hypercapnic responsiveness. Of the components of minute ventilation, timing and respiratory drive, the latter was correlated to hypercapnic responsiveness during both maximal intensity and submaximal exercise. Subjects' perception of R1 did affect their pattern of breathing when added inspiratory loads were present, but ventilatory responsiveness to hypercapnia was the stronger determinant of exercise hyperpnea. It may be possible to screen soldiers who are more prone to work performance decrements when wearing a CB mask. Respiratory muscle strength training programs may help alleviate the adverse respiratory sensations experienced by soldiers wearing CB masks.

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Document Details

Document Type
Technical Report
Publication Date
May 01, 1990
Accession Number
ADA224803

Entities

People

  • Leslie Levine
  • Stephen R. Muza
  • William A. Latzka

Organizations

  • United States Army Research Institute of Environmental Medicine

Tags

Communities of Interest

  • Biomedical
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Force
  • Biological Sciences
  • Biomedical Research
  • Health Services
  • Linear Regression Analysis
  • Military Operations
  • Military Research
  • Muscles
  • Musculoskeletal Physiology
  • Regression Analysis
  • Respiration
  • Respiration Disorders
  • Respiratory Physiological Phenomena
  • Sensation
  • Skeletal Muscle
  • Statistical Analysis
  • Steady State

Readers

  • Cardiovascular Physiology
  • Vision Science/Vision Psychology/Cognitive Neuroscience.