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Effects of Endurance Training on Functional Status of the Respiratory Muscles in Healthy Men

Open Access
|Jan 2018

References

  1. 1. Jones A.M., Carter H. (2000). The effect of endurance training on parameters of aerobic fitness. Sports Medicine 29(6), 373-386.10.2165/00007256-200029060-0000110870864
  2. 2. Cogo A. (2014). Lung, not only heart. Multidisciplinary Respiratory Medicine 9(1), 21. DOI: 10.1186/2049-6958-9-21.10.1186/2049-6958-9-21397798824694347
  3. 3. Guenette J.A., Sheel A.W. (2007). Physiological consequences of a high work of breathing during heavy exercise in humans. Journal of Science and Medicine in Sport 10(6), 341-350. DOI: 10.1016/j.jsams.2007.02.003.10.1016/j.jsams.2007.02.00317418638
  4. 4. Mota S., Casan P., Drobnic F., Giner J., Ruiz O., Sanchis J. et al. (1999). Expiratory flow limitation during exercise in competition cyclists. Journl of Applied Physiology 86(2), 611-616.10.1152/jappl.1999.86.2.6119931198
  5. 5. Dempsey J.A., McKenzie D.C., Haverkamp H.C., Eldridge M.W. (2008). Update in the understanding of respiratory limitations to exercise performance in fit, active adults. Chest 134(3), 613-622. DOI: 10.1378/chest.07-2730.10.1378/chest.07-273018779196
  6. 6. Olafsson S., Hyatt R.E. (1969). Ventilatory mechanics and expiratory flow limitation during exercise in normal subjects. The Journal of Clinical Investigation 48(3), 564-573. DOI: 10.1172/JCI106015.10.1172/JCI1060155357225773092
  7. 7. Fuso L., Di Cosmo V., Nardecchia B., Sammarro S., Pagliari G., Pistelli R. (1996). Maximal inspiratory pressure in elite soccer players. The Journal of Sports Medicine and Physical Fitness 36(1), 67-71.
  8. 8. Klusiewicz A., Borkowski L., Zdanowicz R., Boros P., Wesolowski S. (2008). The inspiratory muscle training in elite rowers. The Journal of Sports Medicine and Physical Fitness 48(3), 279-284.
  9. 9. Lomax M., Grant I., Corbett J. (2011). Inspiratory muscle warm-up and inspiratory muscle training: Separate and combined effects on intermittent running to exhaustion. Journal of Sports Sciences 29(6), 563-569. DOI: 10.1080/02640414.2010.543911.10.1080/02640414.2010.54391121347970
  10. 10. Romer L.M., McConnell A.K., Jones D.A. (2002). Effects of inspiratory muscle training on time-trial performance in trained cyclists. Journal of Sports Sciences 20(7), 547-562. DOI: 10.1080/026404102760000053.10.1080/02640410276000005312166881
  11. 11. Volianitis S., Mcconnell A.K., Koutedakis Y., Mcnaughton L., Backx K., Jones D.A. (2001). Inspiratory muscle training improves rowing performance. Medicine and Science in Sports and Exercise 33(5), 803-809.10.1097/00005768-200105000-0002011323552
  12. 12. Riganas C.S., Vrabas I.S., Christoulas K., Mandroukas K. (2008). Specific inspiratory muscle training does not improve performance or VO2 max levels in well trained rowers. The Journal of Sports Medicine and Physical Fitness 48(3), 285-92.
  13. 13. Clanton T.L., Dixon G.F., Drake J., Gadek J.E. (1987). Effects of swim training on lung volumes and inspiratory muscle conditioning. Journal of Applied Physiology 62(1), 39-46.10.1152/jappl.1987.62.1.393558196
  14. 14. Dunham C., Harms C.A. (2012). Effects of high-intensity interval training on pulmonary function. European Journal of Applied Physiology 112(8), 3061-3068. DOI: 10.1007/s00421-011-2285-5.10.1007/s00421-011-2285-522194005
  15. 15. Armour J., Donnelly P.M., Bye P.T. (1993). The large lungs of elite swimmers: An increased alveolar number? European Respiratory Journal 6(2), 237-247.10.1183/09031936.93.06020237
  16. 16. Coast J.R., Clifford P.S., Henrich T.W., Stray-Gundersen J., Johnson R.L. (1990). Maximal inspiratory pressure following maximal exercise in trained and untrained subjects. Medicine and Science in Sports and Exercise 22(6), 811-815.10.1249/00005768-199012000-000132287259
  17. 17. Cordain L., Tucker A., Moon D., Stager J.M. (1990). Lung volumes and maximal respiratory pressures in collegiate swimmers and runners. Research Quarterly for Exercise and Sport 61(1), 70-74. DOI: 10.1080/02701367.1990.10607479.10.1080/02701367.1990.106074792091169
  18. 18. Eastwood P.R., Hillman D.R., Finucane K.E. (2001). Inspiratory muscle performance in endurance athletes and sedentary subjects. Respirology 6(2), 95-104. DOI: 10.1046/j.1440-1843.2001.00314.x.10.1046/j.1440-1843.2001.00314.x11422888
  19. 19. Klusiewicz A., Zubik L., Długolecka B., Charmas M. (2014). Characteristics of the respiratory muscle strength of women and men at different training levels. Polish Journal of Sport and Tourism 21(2), 82-86. DOI: 10.2478/pjst-2014-0008.10.2478/pjst-2014-0008
  20. 20. Mejuto G., Arratibel I., Cámara J., Puente A., Iturriaga G., Calleja-González J. (2012). The effect of a 6-week individual anaerobic threshold based programme in a traditional rowing crew. Biology of Sport 29(4), 297-301. DOI: 10.5604/20831862.1019886.10.5604/20831862.1019886
  21. 21. Seiler S. (2012). Training intensity distribution. In I. Mujika (ed.), Endurance training - science and practice (pp. 29-39). Vitoria-Gasteiz Basque Country: Inigo Mujika S.L.U.
  22. 22. Klusiewicz A. (2008). Characteristics of the inspiratory muscle strength in well trained athletes. Biology of Sport 25, 13-22.
  23. 23. Romer L.M., McConnell A.K. (2004). Inter-test reliability for non-invasive measures of respiratory muscle function in healthy humans. European Journal of Applied Physiology 91(2-3), 167-176. DOI: 10.1007/s00421-003-0984-2.10.1007/s00421-003-0984-214605897
  24. 24. Wen A.S., Woo M.S., Keens T.G. (1997). How many maneuvers are required to measure maximal inspiratory pressure accurately. Chest 111(3), 802-807.10.1378/chest.111.3.8029118723
  25. 25. Hanel B., Levine B.D., Engfred K., Clifford P.S., Friedman D.B., Secher N.H. (1994). Maximal inspiratory pressure following endurance training at altitude. Ergonomics 37(1), 59-67. DOI: 10.1080/00140139408963623.10.1080/001401394089636238112283
  26. 26. McConnell A.K., Caine M.P., Sharpe G.R. (1997). Inspira-tory muscle fatigue following running to volitional fatigue: The influence of baseline strength. International Journal of Sports Medicine 18(3), 169-173. DOI: 10.1055/s-2007-972614.10.1055/s-2007-9726149187969
  27. 27. Brown P.I., Johnson M.A., Sharpe G.R. (2014). Determinants of inspiratory muscle strength in healthy humans. Respiratory Physiology & Neurobiology 196, 50-55. DOI: 10.1016/j.resp.2014.02.014.10.1016/j.resp.2014.02.014
  28. 28. Winkler G., Zifko U., Nader A., Frank W., Zwick H., Toifl K. et al. (2000). Dose-dependent effects of inspiratory muscle training in neuromuscular disorders. Muscle & Nerve 23(8), 1257-1260.10.1002/1097-4598(200008)23:8<;1257::AID-MUS15>3.0.CO;2-M
  29. 29. Santtila M., Keijo H., Laura K., Heikki K. (2008). Changes in cardiovascular performance during an 8-week military basic training period combined with added endurance or strength training. Military Medicine 173(12), 1173-1179.10.7205/MILMED.173.12.1173
  30. 30. Howley E.T., Bassett D.R.J., Welch H.G. (1995). Criteria for maximal oxygen uptake: Review and commentary. Medicine and Science in Sports and Exercise 27(9), 1292-1301.10.1249/00005768-199509000-00009
  31. 31. Hickson R.C., Rosenkoetter M.A. (1981). Reduced training frequencies and maintenance of increased aerobic power. Medicine and Science in Sports and Exercise 13(1), 13-16.10.1249/00005768-198101000-00011
  32. 32. Legg S.J., Duggan A. (1996). The effects of basic training on aerobic fitness and muscular strength and endurance of British Army recruits. Ergonomics 39(12), 1403-1418. DOI: 10.1080/00140139608964560.10.1080/00140139608964560
  33. 33. Santtila M. (2010). Effects of added endurance or strength training on cardiovascular and neuromuscular performance of conscripts during the 8-week basic training period. Doctoral thesis, University of Jyväskylä, Finland.
  34. 34. Carte H., Jones A.M., Doust J.H. (1999). Effect of 6 weeks of endurance training on the lactate minimum speed. Journal of Sports Sciences 17(12), 957-967. DOI: 10.1080/026404199365353.10.1080/026404199365353
  35. 35. Hickson R.C., Hagberg J.M., Ehsani A.A., Holloszy J.O. (1981). Time course of the adaptive responses of aerobic power and heart rate to training. Medicine and Science in Sports and Exercise 13(1), 17-20.10.1249/00005768-198101000-00012
  36. 36. Saunders P.U., Pyne D.B., Telford R.D., Hawley J.A. (2004). Factors affecting running economy in trained distance runners. Sports Medicine 34(7), 465-485. DOI: 10.2165/00007256-200434070-00005.10.2165/00007256-200434070-00005
  37. 37. Williams K.R., Cavanagh P.R. (1987). Relationship between distance running mechanics, running economy, and performance. Journal of Applied Physiology 63(3), 1236-1245.10.1152/jappl.1987.63.3.1236
  38. 38. Griffiths L.A., McConnell A.K. (2012). The influence of rowing-related postures upon respiratory muscle pressure and flow generating capacity. European Journal of Applied Physiology 112(12), 4143-4150. DOI: 10.1007/s00421-012-2399-4.10.1007/s00421-012-2399-422526249
  39. 39. Lazovic B., Mazic S., Suzic-Lazic J., Djelic M., Djordjevic-Saranovic S., Durmic T. et al. (2015). Respiratory adaptations in different types of sport. European Review for Medical and Pharmacological Sciences 19(12), 2269-2274.
  40. 40. Mahler D.A., Hunter B., Lentine T., Ward J. (1991). Locomotor-respiratory coupling develops in novice female rowers with training. Medicine and Science in Sports and Exercise 23(12), 1362-1366.10.1249/00005768-199112000-00007
  41. 41. Steinacker J.M., Both M., Whipp B.J. (1993). Pulmonary mechanics and entrainment of respiration and stroke rate during rowing. International Journal of Sports Medicine 14, 15-19.10.1055/s-2007-10212178262700
  42. 42. Siegmund G.P., Edwards M.R., Moore K.S., Tiessen D.A., Sanderson D.J., McKenzie D.C. (1999). Ventilation and locomotion coupling in varsity male rowers. Journal of Applied Physiology 87(1), 233-242.10.1152/jappl.1999.87.1.23310409580
  43. 43. Mahler D.A., Shuhart C.R., Brew E., Stukel T.A. (1991). Ventilatory responses and entrainment of breathing during rowing. Medicine and Science in Sports and Exercis 23(2), 186-192.10.1249/00005768-199102000-00007
DOI: https://doi.org/10.1515/pjst-2017-0023 | Journal eISSN: 2082-8799 | Journal ISSN: 1899-1998
Language: English
Page range: 235 - 241
Submitted on: Aug 24, 2017
Accepted on: Oct 19, 2017
Published on: Jan 19, 2018
Published by: University of Physical Education in Warsaw
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Andrzej Klusiewicz, Łukasz Zubik, Barbara Długołęcka, Małgorzata Charmas, Jerzy Broniec, Benedykt Henryk Opaszowski, Michał Starczewski, Maria Ładyga, published by University of Physical Education in Warsaw
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.