Zitieren

1. Lewiecki E.M. (2008). Prevention and treatment of post-menopausal osteoporosis. Obstetrics and Gynecology Clinics of North America 35, 301-315.10.1016/j.ogc.2008.03.00718486843Search in Google Scholar

2. Cooper C., Cole Z.A., Holroyd C.R., Earl S.C., Harvey N.C. et al. (2011). The IOF CSA Working Group on Fracture Epidemiology. Secular trends in the incidence of hip and other osteoporotic fractures. Osteoporosis International 22, 1277-1288.10.1007/s00198-011-1601-6354631321461721Search in Google Scholar

3. Czerwiński E., Boczoń K., Kumorek A. (2012). Epidemiology of osteoporotic fractures. Postępy Nauk Medycznych 3, 206-212. [in Polish]Search in Google Scholar

4. Kanis J.A., Johnell O., Oden A., De Laet C., Mellstrom D. (2004). Epidemiology of osteoporosis and fractures in men. Calcified Tissue International 10, 107-112.10.1007/s00223-004-0287-615185058Search in Google Scholar

5. Beck B.R., Daly R.M., Singh M.A., Taaffe D.R. (2017). Exercise and Sports Science Australia (ESSA) position statement on exercise prescription for the prevention and management of osteoporosis. Journal of Science and Medicine in Sport 20(5), 438-445.10.1016/j.jsams.2016.10.00127840033Search in Google Scholar

6. Roy C., Combes C., Drouet C., Glimcher M.J. (2009). Bone mineral: Update on chemical composition and structure. Osteoporosis International 20, 1013-1021.10.1007/s00198-009-0860-y276048519340505Search in Google Scholar

7. Almeida M. (2012). Aging mechanisms in bone. BoneKEy Reports 1, 102.10.1038/bonekey.2012.102365982223705067Search in Google Scholar

8. Bloomfield S.A. (2005). Contributions of physical activity to bone health over the lifespan. Topics in Geriatric Rehabilitation 21(1), 68-76.10.1097/00013614-200501000-00008Search in Google Scholar

9. Morseth B., Emaus N., Jørgensen L. (2011). Physical activity and bone: The importance of the various mechanical stimuli for bone mineral density. A review. Norsk Epidemiologi 20(2), 173-178.10.5324/nje.v20i2.1338Search in Google Scholar

10. Bailey C.A., Kukuljan S., Daly R.M. (2010). Effects of lifetime loading history on cortical bone density and its distribution in middle-aged and older men. Bone 47(3), 673-80.10.1016/j.bone.2010.06.02720601299Search in Google Scholar

11. Szponar L., Wolnicka K., Rychlik E. (2008). Album of photographs of food products and dishes. National Food and Nutrition Institute, Warsaw. [in Polish]Search in Google Scholar

12. Kunachowicz H., Nadolna I., Przygoda B., Iwanow K. (2005). Tables of food composition and nutritional value. Medical Journal PZWL, Warsaw. [in Polish]Search in Google Scholar

13. Jarosz M. (ed.) (2017). Nutrition standards for the Polish population. National Food and Nutrition Institute, Warsaw. [in Polish]Search in Google Scholar

14. Drygas W. (2006). Does sedentary lifestyle still pose a threat to the health of the Polish society? Medycyna Sportowa 22, 111-116. [in Polish]Search in Google Scholar

15. Cauley J.A. (2013). Public health impact of osteoporosis. Journal of Gerontology 68, 1243-1251.10.1093/gerona/glt093Search in Google Scholar

16. Grabara M. (2017). Hatha yoga as a form of physical activity in the context of lifestyle disease prevention. Polish Journal of Sport and Tourism 24, 65-78.10.1515/pjst-2017-0007Search in Google Scholar

17. Korhonen M.T., Mero A.A., Alen M., Sipila S., Hakkinen K. et al. (2009). Biomechanical and skeletal muscle determinants of maximum running speed with aging. Medicine Science in Sports Exercise 41(4), 844-856.10.1249/MSS.0b013e3181998366Search in Google Scholar

18. Petersen B.A., Hastings B., Gottschall J.S. (2017). Low load, high repetition resistance training program increases bone mineral density in untrained adults. Journal of Sports Medicine and Physical Fitness 57(1-2), 70-76.10.23736/S0022-4707.16.05697-8Search in Google Scholar

19. Hagman M., Wolff Helge E., Hornstrup T., Fristrup B., Nielsen J.J. et al. (2018). Bone mineral density in lifelong trained male football players compared with young and elderly untrained men. Journal of Sport and Heath Science 7, 159-168.10.1016/j.jshs.2017.09.009Search in Google Scholar

20. Silver T., Ellerbroek A., Knofo S., Peacock C.A., Tartar J. et al. (2018). High and low impact physical activity positively influences female bone density. Journal of Exercise and Nutrition 1(5), 1-4.Search in Google Scholar

21. Gunter K.B., Almstedt H.C., Janz K.F. (2012). Physical activity in childhood may be the key to optimizing lifespan skeletal health. Exercise and Sport Sciences Reviews 40(1), 13-21.10.1097/JES.0b013e318236e5eeSearch in Google Scholar

22. Tveit M., Rosengren B.E., Nilsson J.A., Ahlborg H.G., Karlsson M.K. (2012). Bone mass following physical activity in young years: A mean 39-year prospective controlled study in men. Osteoporosis International 2012 DOI: 10.1007/s00198-012-2081-z.10.1007/s00198-012-2081-zOpen DOISearch in Google Scholar

23. Nilsson B.E., Wesflin N.E. (1971). Bone density in athletes. Clinical Orthopaedics and Related Research 77, 179-182.Search in Google Scholar

24. Nilsson M., Ohlsson C., Oden A., Mellstrom D., Lorentzon M. (2012). Increased physical activity is associated with enhanced development of peak bone mass in men: A five-year longitudinal study. Journal of Bone and Mineral Research 27(5), 1206-1214.10.1002/jbmr.1549Search in Google Scholar

25. Šolaja A., Šolaja M. (2017). Differences in the parameters of calcaneal bone mineral density between elite track and field athletes, elite handball players and sedentary male controls. Facta Universitatis. Series: Physical Education and Sport 15(2), 261-270.Search in Google Scholar

26. Antonio J., Leaf A., Carson C., Ellerbroek A., Silver T. et al. (2018). Bone mineral density in competitive athletes. Journal of Exercise and Nutrition 1(2), 1-11.Search in Google Scholar

27. Neville C.E., Murray L.J., Boreham C.A., Gallagher A.M., Twisk J. et al. (2002). Relationship between physical activity and bone mineral status in young adults: The Northern Ireland Young Hearts Project. Bone 30(5), 792-798.10.1016/S8756-3282(02)00711-1Search in Google Scholar

28. Ma H., Leskinen T., Alen M., Cheng S., Sipila S. et al. (2009). Long-term leisure time physical activity and properties of bone: A twin study. Journal of Bone and Mineral Research 24(8), 1427-1433.10.1359/jbmr.09030919335223Search in Google Scholar

29. Gomez-Cabello A., Ara I., Gonzalez-Ageuero A., Casajus J.A., Vicente-Rodrıguez G. (2012). Effects of training on bone mass in older adults. Sports Medicine 42, 301-325.10.2165/11597670-000000000-0000022376192Search in Google Scholar

30. Mędrala-Kuder E. (2011). Evaluation of the lifestyle of students of physiotherapy and technical & computer science based on their diet and physical activity. Roczniki Państwowego Zakładu Higieny 62(3), 315-318. [in Polish]Search in Google Scholar

31. Reeves B., Barwick E., Maghrabi P. (2018). Physical fitness level of first year exercise science students. Journal of Exercise and Nutrition 1(5).Search in Google Scholar

32. Konieczna A., Demidaś A., Berner E. (2004). The estimation of the bone mineral density in students aged 20-29 years. Acta Bio-Optica et Informatica Medica 10, 87-90. [in Polish]Search in Google Scholar

33. Almstedt H.C., Canepa J.A., Ramirez D.A., Shoepe T.C. (2011). Changes in bone mineral density in response to 24 weeks of resistance training in college-age men and women. Journal of Strength Conditioning Research 25(4), 1098-1103.10.1519/JSC.0b013e3181d09e9d20647940Search in Google Scholar

34. Liberato S.C., Bressan J., Hills A.P. (2013). The role of physical activity and diet on bone mineral indices in young men: A cross-sectional study. Journal of the International Society of Sports Nutrition 10, 43.10.1186/1550-2783-10-43384950424066848Search in Google Scholar

35. Pettersson U., Nilsson M., Sundh V., Mellstrom D., Lorentzon M. (2010). Physical activity is the strongest predictor of calcaneal peak bone mass in young Swedish men. Osteoporosis International 21(3), 447-455.10.1007/s00198-009-0982-219533209Search in Google Scholar

36. Ondrak K.S., Morgan D.W. (2007). Physical activity, calcium intake and bone health in children and adolescents. Sports Medicine 37(7), 587-601.10.2165/00007256-200737070-0000317595154Search in Google Scholar

37. Alghadir A.H., Gabr S.A., Al-Eisa E. (2015). Physical activity and lifestyle effects on bone mineral density among young adults: Sociodemographic and biochemical analysis. Journal of Physical Therapy Science 27(7), 2261-227.10.1589/jpts.27.2261454086026311965Search in Google Scholar

38. Ito S., Ishida H., Uenishi K., Murakami K., Sasaki S. (2011). The relationship between habitual dietary phosphorus and calcium intake, and bone mineral density in young Japanese women: A cross-sectional study. Asia Pacific Journal of Clinical Nutrition 20(3), 411-417.Search in Google Scholar

eISSN:
2082-8799
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Medizin, Klinische Medizin, Öffentliches Gesundheitswesen, Sport und Freizeit, other