Effects of Endurance Training Intensity on Pulmonary Diffusing Capacity at Rest and after Maximal Aerobic Exercise in Young Athletes.

Rim Dridi, Nadia Dridi, Karuppasamy Govindasamy, Nabil Gmada, Ridha Aouadi, Hervé Guénard, Ismail Laher, Ayoub Saeidi, Katsuhiko Suzuki, Anthony C Hackney, Hassane Zouhal

Journal: International journal of environmental research and public health 2021;18(23):12359

PMID: 34886081

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Intermittent exercise, where small bouts of exercise are performed over a short period of time and endurance exercise, has been shown to be particularly effective at improving different aspects of lung function. This randomised control trial aimed to determine the effects of intense endurance training compared too moderate endurance training on lung function. The results showed that lung function was improved following intense endurance training but not moderate endurance training. It was concluded that training intensity may be the most important factor when increasing lung function in athletes. This study could be used by professionals to recommend intense endurance training to improve exercise capacity in athletes.

Abstract

This study compared the effects of varying aerobic training programs on pulmonary diffusing capacity (TL), pulmonary diffusing capacity for nitric oxide (TL), lung capillary blood volume (Vc) and alveolar-capillary membrane diffusing capacity (DM) of gases at rest and just after maximal exercise in young athletes. Sixteen healthy young runners (16-18 years) were randomly assigned to an intense endurance training program (IET, = 8) or to a moderate endurance training program (MET, = 8). The training volume was similar in IET and MET but with different work intensities, and each lasted for 8 weeks. Participants performed a maximal graded cycle bicycle ergometer test to measure maximal oxygen consumption (VOmax) and maximal aerobic power (MAP) before and after the training programs. Moreover, TL, TL and Vc were measured during a single breath maneuver. After eight weeks of training, all pulmonary parameters with the exception of alveolar volume (VA) and inspiratory volume (VI) (0.104 < < 0889; 0.001 < ES < 0.091), measured at rest and at the end of maximal exercise, showed significant group × time interactions ( < 0.05, 0.2 < ES < 4.0). Post hoc analyses revealed significant pre-to-post decreases for maximal heart rates ( < 0.0001, ES = 3.1) and improvements for VOmax ( = 0.006, ES = 2.22) in the IET group. Moreover, post hoc analyses revealed significant pre-to-post improvements in the IET for DM, TL, TL and Vc (0.001 < < 0.0022; 2.68 < ES < 6.45). In addition, there were increases in Vc at rest, VOmax, TL and DM in the IET but not in the MET participants after eight weeks of training with varying exercise intensities. Our findings suggest that the intensity of training may represent the most important factor in increasing pulmonary vascular function in young athletes.

Address: Research Unit 17JS01 (Sport, Performance, Health and Society) Higher Institute of Sport and Physical Education of Ksar Said, University of La Manouba, Tunis 2010, Tunisia.; Department of Physical Education & Sports Science, SRM Institute of Science and Technology, Kattankulathur 603203, Tamilnadu, India.; Physical Education and Sport Sciences Department, Sultan Qaboos University, Muscat 123, Oman.; Department of Physiology, Victor Segalen University, 33076 Bordeaux, France.; Department of Anesthesiology, Pharmacology and Therapeutics, Faculty of Medicine, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.; Department of Physical Education and Sport Sciences, University of Kurdistan, Pasdaran St., Sanandaj 6617715175, Iran.; Faculty of Sport Sciences, Waseda University, Tokorozawa 359-1192, Japan.; Department of Exercise & Sport Science, University of North Carolina, Chapel Hill, NC 27599, USA.; M2S (Laboratoire Mouvement, Sport, Santé)-EA 1274, Université de Rennes, 35000 Rennes, France.; Institut International des Sciences du Sport (2I2S), 35850 Irodouer, France.

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