Training the equine respiratory muscles: Ultrasonographic measurement of muscle size
- PMID: 35575148
- PMCID: PMC10084327
- DOI: 10.1111/evj.13598
Training the equine respiratory muscles: Ultrasonographic measurement of muscle size
Abstract
Background: Limited information exists regarding changes in the size of respiratory and locomotor muscles in response to exercise training in the Thoroughbred racehorse.
Objectives: To describe and compare the responses of the respiratory and locomotor muscles to conventional exercise training and inspiratory muscle training (IMT).
Study design: Prospective randomised controlled trial.
Methods: Thoroughbred racehorses, in training for competition in National Hunt races, were recruited from two training establishments. Ultrasonographic images were obtained for selected muscles of the upper airway, diaphragm, accessory respiratory, and locomotor systems and their sizes measured. Examinations were performed at three timepoints: (A) when unfit, (B) following 12 weeks of conventional exercise training and (C) following 10-12 weeks continued training at race fitness. In addition, horses at yard 1 performed IMT, between timepoint B and C, and were randomly assigned into high-load (treatment) or low-load (control) group. Repeated measures models were constructed to compare the change in muscle measurements over time, and to investigate the effects of yard, previous airway surgery and IMT on the change in ultrasonographic size measurements obtained.
Results: Upper airway muscle size increased in response to conventional race training between timepoints A-C, and B-C. Diaphragm size increased in response to conventional exercise training between timepoints A and B. The diaphragm size of horses that undertook high-load IMT was either maintained or increased, whereas diaphragm size decreased in horses that undertook low-load IMT or no IMT between timepoints B and C. A significant interaction between gluteal muscle size and airway surgery status was observed, with greater gluteal muscle thicknesses measured in horses that had not previously undergone airway surgery (left gluteal 3.9%, p < 0.001; right 4.5%, p = 0.04).
Main limitations: Low number of horses underwent IMT.
Conclusions: Respiratory and locomotor muscles increase in size in response to conventional exercise training, with a further change in diaphragm size in response to inspiratory muscle training.
Keywords: horse; inspiratory muscle training; thickness; ultrasound.
© 2022 The Authors. Equine Veterinary Journal published by John Wiley & Sons Ltd on behalf of EVJ Ltd.
Conflict of interest statement
A.K. McConnell has previously developed two commercial devices for inspiratory muscle training in human subjects but no longer has any financial interest in either product. Other authors declare no competing interests.
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References
-
- Franklin SH, Van Erck‐Westergren E, Bayly WM. Respiratory responses to exercise in the horse. Equine Vet J. 2012;44(6):726–32. - PubMed
-
- Bayly WM, Grant BD, Breeze RG, Kramer JW. The effects of maximal exercise on acid‐base balance and arterial blood gas tension in thoroughbred horses. Equine Exerc Physiol. 1983;1:401–7.
-
- Wagner PD. Why doesn't exercise grow the lungs when other factors do? Exerc Sport Sci Rev. 2005;33(1):3–8. - PubMed
-
- Cobb MA, Schutt WA, Hermanson JW. Morphological, histochemical, and myosin isoform analysis of the diaphragm of adult horses, Equus caballus. Anat Rec. 1994;238(3):317–25. - PubMed
-
- Romer LM, Polkey MI. Exercise‐induced respiratory muscle fatigue: implications for performance. J Appl Physiol (1985). 2008;104(3):879–88. - PubMed
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