Literature DB >> 3959854

Effect of blood pH on peripheral and central signals of perceived exertion.

R J Robertson, J E Falkel, A L Drash, A M Swank, K F Metz, S A Spungen, J R LeBoeuf.   

Abstract

Ten male subjects underwent exercise testing in three modes, arms (A), legs (L), and arms + legs (A + L), after ingesting 0.3 g X kg-1 body weight of either NaHCO3 to induce alkalosis or CaCO3 as a placebo (i.e., six exercise trials). Ratings of perceived exertion (RPE: Borg, 15-pt scale) for the arms (RPE-A), legs (RPE-L), chest (REP-C), and overall body (RPE-O) did not differ between acid-base conditions at 20, 40, or 60% VO2max for all three exercise modes. At 80% VO2max, 1) RPE-A was lower (P less than 0.01) during A; 2) RPE-L was lower (P less than 0.01) during L; and 3) RPE-A and RPE-L were lower (P less than 0.01) during A + L under the NaHCO3 as compared to the CaCO3 condition. Differences were not found for RPE-L during A or for RPE-A during L. RPE-C and RPE-O were lower (P less than 0.01) under NaHCO3 during A, L, and A + L. Blood acid-base, VO2, and cardiorespiratory responses were not differentially influenced by exercise mode. Blood pH was significantly higher under NaHCO3 than CaCO3 at pre-exercise and 80% VO2max. VO2, heart rate, and tidal volume did not differ between acid-base conditions at any exercise intensity. VE and respiratory rate did not differ between acid-base conditions at 20, 40, or 60% VO2max but were significantly lower under NaHCO3 at 80% VO2max. RPE-A and L were positively related to blood [H+], and RPE-C was positively related to VE for all exercise modes.

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Year:  1986        PMID: 3959854

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  21 in total

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4.  Assessment of Subjective Perceived Exertion at the Anaerobic Threshold with the Borg CR-10 Scale.

Authors:  Antonio R Zamunér; Marlene A Moreno; Taís M Camargo; Juliana P Graetz; Ana C S Rebelo; Nayara Y Tamburús; Ester da Silva
Journal:  J Sports Sci Med       Date:  2011-03-01       Impact factor: 2.988

5.  Perceived exertion and blood lactate concentration during graded treadmill running.

Authors:  F W Kolkhorst; S W Mittelstadt; F A Dolgener
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6.  The effects of induced alkalosis on the metabolic response to prolonged exercise in humans.

Authors:  S D Galloway; R J Maughan
Journal:  Eur J Appl Physiol Occup Physiol       Date:  1996

Review 7.  Role of Ratings of Perceived Exertion during Self-Paced Exercise: What are We Actually Measuring?

Authors:  Chris R Abbiss; Jeremiah J Peiffer; Romain Meeusen; Sabrina Skorski
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Review 8.  Pacing and decision making in sport and exercise: the roles of perception and action in the regulation of exercise intensity.

Authors:  Benjamin L M Smits; Gert-Jan Pepping; Florentina J Hettinga
Journal:  Sports Med       Date:  2014-06       Impact factor: 11.136

9.  Use of ratings of perceived exertion for exercise prescription.

Authors:  T J Birk; C A Birk
Journal:  Sports Med       Date:  1987 Jan-Feb       Impact factor: 11.136

10.  Blood glucose extraction as a mediator of perceived exertion during prolonged exercise.

Authors:  R J Robertson; R T Stanko; F L Goss; R J Spina; J J Reilly; K D Greenawalt
Journal:  Eur J Appl Physiol Occup Physiol       Date:  1990
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