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Citations to this article

A critical assessment of the mechanism by which hyperoxia attenuates exercise-induced asthma.
A D Resnick, … , R H Ingram Jr, E R McFadden Jr
A D Resnick, … , R H Ingram Jr, E R McFadden Jr
Published August 1, 1979
Citation Information: J Clin Invest. 1979;64(2):541-549. https://doi.org/10.1172/JCI109492.
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Research Article

A critical assessment of the mechanism by which hyperoxia attenuates exercise-induced asthma.

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Abstract

Recent data demonstrate that the magnitude of the heat loss that occurs from the respiratory tract during exercise correlates with the degree of post-exertional obstruction that develops in asthmatics. Respiratory heat loss relates directly to the minute ventilation and heat capacity of the inspired gas and inversely to its water content and temperature. Because it has been shown that inhaling 100% oxygen during exercise blunts the obstructive response, we wondered if this effect could be accounted for by differing values of heat exchange with air and oxygen breathing. To examine this question, we studied 10 asthmatics by measuring multiple aspects of pulmonary mechanics before and after four bouts of exhausting leg work during which the subjects inhaled either air or oxygen conditioned to provide widely differing thermal burdens on their airways. Under all inspired gas conditions, oxygen breathing produced significantly less obstruction than air. Minute ventilation was also significantly less with oxygen as was the total heat lost. As the latter fell, so did the magnitude of the postexercise obstruction. When the differences in ventilation and respiratory heat loss between air and oxygen were eliminated by eucapnic hyperventilation, the differences in the obstructive responses also disappeared. Thus, the effects of hyperoxia on exercise-induced asthma can be accounteed for solely by alterations in heat exchange.

Authors

A D Resnick, E C Deal Jr, R H Ingram Jr, E R McFadden Jr

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Total citations by year

Year: 2022 2010 2007 1998 1997 1991 1990 1986 1985 1984 1983 1982 1979 Total
Citations: 1 1 1 1 1 1 1 1 1 1 1 2 1 14
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (14)

Title and authors Publication Year
Oxygen-enriched air reduces breathing gas consumption over air.
Schipke JD, Deussen A, Moeller F, Hoffmann U, Muth T, Zenske A, Koch A
2022
Pharmacotherapy for exercise-induced asthma: allowing normal levels of activity and sport
KD Fitch
Expert Review of Clinical Pharmacology 2010
Responsiveness of Patient-Reported Breathlessness During Exercise in Persistent Asthma
DA Mahler, LA Waterman, J Ward, JC Baird
Chest 2007
Asthma
NB Pride
Asthma 1998
Hyperpnea-induced bronchoconstriction is dependent on tachykinin-induced cysteinyl leukotriene synthesis
XX Yang, WS Powell, M Hojo, JG Martin
Journal of applied physiology 1997
Effect of hyperoxia on bronchial response to inhaled methacholine
A Wollner, L Ben-Dov, E Bar-Yishay
Allergy 1991
Analysis of Refractory Period after Exercise and Eucapnic Voluntary Hyperventilation Challenge
RR Rosenthal, BL Laube, DB Hood, PS Norman
American journal of respiratory and critical care medicine 1990
Cold-induced bronchospasm in normal and sensitized rabbits
Y Jammes, P Barthelemy, M Fornaris, C Grimaud
Respiration Physiology 1986
Exercise and the Asthmatic:
A Bundgaard
Sports Medicine 1985
Physical training in bronchial asthma
A Bundgaard, T Ingemann-Hansen, J Halkjaer-Kristensen
International Rehabilitation Medicine 1984
Current Concepts of Exercise-Induced Asthma
SD Anderson
Allergy 1983
Controlled-analysis of the effects of inhaled lignocaine in exercise-induced asthma
MP Griffin, ER McFadden, RH Ingram, S Pardee
Thorax 1982
Exercise-induced asthma without respiratory heat loss
I Ben-Dov, E Bar-Yishay, S Godfrey
Thorax 1982
Exercise-Induced Asthma: Observations on the Initiating Stimulus
HL Bleich, MJ Moore, ER McFadden, RH Ingram
New England Journal of Medicine 1979

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