| Autorzy: |
Mohammed jasim Mohammed
Al-khalidi
University of Kufa, Faculty of Education for girls, Iraq Baydaa Kareem Fleih Serbot Al.fatlaw
University of Kufa, Faculty of Education for girls, Iraq |
| Słowa kluczowe: | sports activity athletes non-athletes blood lipides |
| Data publikacji całości: | 2026 |
| Liczba stron: | 8 (79-86) |
| 1. | Al-Khalidi, M. J. M. & Al-Ghazali, A. K. D. (2017). The effect of physiotherapy of spinal deviations according to anatomical and kinematic analysis. Journal of Global Pharma Technology, 8(9), 68–71. |
| 2. | Barnard, N. D., Goldman, D. M., Loomis, J. F., Kahleova, H., Levin, S. M., Neabore, S., & Batts, T. C. (2019). Plant-based diets for cardiovascular safety and performance in endurance sports. Nutrients, 11(1), Article 130. https://doi.org/10.3390/nu11010130 |
| 3. | Brun, J. F., Fédou, C., Grubka, E., Karafiat, M., Varlet-Marie, E., & Mercier, J. (2008). Moindre utilisation des lipides à l’exercice chez le diabétique de type 1. Science & Sports, 23(3–4), 121–128. https://doi.org/10.1016/j.scispo.2007.12.016 |
| 4. | Bull, F. C., Al-Ansari, S. S., Biddle, S., Borodulin, K., Buman, M. P., Cardon, G., Carty, C., Chaput, J.-P., Chastin, S., Chou, R., Dempsey, P. C., Dipietro, L., Ekelund, U., Firth, J., Friedenreich, C. M., Garcia, L., Gichu, M., Jago, R., Katzmarzyk, P. T., … Willumsen, J. F. (2020). World Health Organization 2020 guidelines on physical activity and sedentary behaviour. British Journal of Sports Medicine, 54(24), 1451–1462. https://doi.org/10.1136/bjsports-2020-102955 |
| 5. | Buyukyazi, G., Ulman, C., Taneli, F., Esen, H., Gozlukaya, F., Ozcan, I., & Tikiz, H. (2010). Effets de programmes de marche de différentes intensités sur les lipides sériques, la protéine C réactive ultrasensible et la phospholipase A2 associée à une lipoprotéine chez des femmes pré. Science & Sports, 25(5), 262–268. https://doi.org/10.1016/j.scispo.2010.01.002 |
| 6. | Doewes, R. I., Gharibian, G., Zadeh, F. A., Zaman, B. A., Vahdat, S., & Akhavan-Sigari, R. (2023). An updated systematic review on the effects of aerobic exercise on human blood lipid profile. Current Problems in Cardiology, 48(5), 101108. https://doi.org/10.1016/j.cpcardiol.2022.101108 |
| 7. | Fricker Naval, R. (2022). Target Populations, Sampling Frames, and Coverage Error. Survey Methodology. |
| 8. | Fuchs, F. D., & Whelton, P. K. (2020). High blood pressure and cardiovascular disease. Hypertension, 75(2), 285–292. https://doi.org/10.1161/HYPERTENSIONAHA.119.14240 |
| 9. | Huang, J. K., & Lee, H. C. (2022). Emerging evidence of pathological roles of very-low-density lipoprotein (VLDL). International Journal of Molecular Sciences, 23(8), 4300. https://doi.org/10.3390/ijms23084300 |
| 10. | Izadifar, Z., Babyn, P., & Chapman, D. (2017). Mechanical and biological effects of ultrasound: A review of present knowledge. Ultrasound in Medicine & Biology, 43(6), 1085–1104. https://doi.org/10.1016/j.ultrasmedbio.2017.01.023 |
| 11. | Jasim, M. K., & Takleef, D.H. (2018). Effect of resistance exercises by means of aids with doses of vitamin D3 in some biomechanical variants to develop the spike skill of volleyball for female students. Journal of Global Pharma Technology, 10(9 Suppl.), 137–141. |
| 12. | Jebari-Benslaiman, S., Galicia-García, U., Larrea-Sebal, A., Olaetxea, J. R., Alloza, I., Vandenbroeck, K., Benito-Vicente, A., & Martín, C. (2022). Pathophysiology of atherosclerosis. International Journal of Molecular Sciences, 23(6), 3346. https://doi.org/10.3390/ijms23063346 |
| 13. | Libby, P., Ridker, P. M., & Maseri, A. (2002). Inflammation and atherosclerosis. Circulation, 105(9), 1135–1143. https://doi.org/10.1161/hc0902.104353 |
| 14. | Markin, A. M., Markina, Y. V., Bogatyreva, A. I., Tolstik, T. V., Chakal, D. A., Breshenkov, D. G., & Charchyan, E. R. (2023). The role of cytokines in cholesterol accumulation in cells and atherosclerosis progression. International Journal of Molecular Sciences, 24(7), 6426. https://doi.org/10.3390/ijms24076426 |
| 15. | Qiu, Y., Fernández-García, B., Lehmann, H. I., Li, G., Kroemer, G., López-Otín, C., & Xiao, J. (2023). Exercise sustains the hallmarks of health. Journal of Sport and Health Science, 12(1), 8–35. https://doi.org/10.1016/j.jshs.2022.10.003 |
| 16. | Schonbrun, E., Malka, R., Di Caprio, G., Schaak, D., & Higgins, J. M. (2014). Quantitative absorption cytometry for measuring red blood cell hemoglobin mass and volume. Cytometry Part A, 85(4), 332–340. https://doi.org/10.1002/cyto.a.22450 |
| 17. | Shamaitijiang, X., Kimita, W., Ko, J., Skudder-Hill, L., Liu, Y., & Petrov, M. S. (2024). Relationship of liver blood tests and T1 relaxation time with intra-pancreatic fat deposition. Journal of Clinical and Experimental Hepatology, 14(3), 101343. https://doi.org/10.1016/j.jceh.2023.101343 |
| 18. | Sultana, S., Zeba, Z., Hossain, A., Khaleque, A., Zinnat, R., & Ali, L. (2015). Serum proinsulin in Bangladeshi subjects with impaired glucose tolerance. Bangladesh Journal of Medical Biochemistry, 7(2), 50–55. https://doi.org/10.3329/bjmb.v7i2.22411 |
| 19. | Szymanowski, P., Szepieniec, W. K., Zarawski, M., Gruszecki, P., Szweda, H., & Jóźwik, M. (2020). The impact of birth anesthesia on the parameters of oxygenation and acid–base balance in umbilical cord blood. Journal of Maternal-Fetal & Neonatal Medicine, 33(20), 3465–3471. https://doi.org/10.1080/14767058.2019.1574740 |
| 20. | Wilson, P. W. F., Jacobson, T. A., Martin, S. S., Jackson, E. J., Le, N. A., Davidson, M. H., Vesper, H. W., Frikke-Schmidt, R., Ballantyne, C. M., & Remaley, A. T. (2021). Lipid measurements in the management of cardiovascular diseases: Practical recommendations—A scientific statement from the National Lipid Association writing group. Journal of Clinical Lipidology, 15(5), 629–648. https://doi.org/10.1016/j.jacl.2021.09.046 |
| 21. | Ziauddin, K., & Fagundes, C. P. (2023). Physical activity. In Lifestyle psychiatry: Through the lens of behavioral medicine (pp. 317–334). CRC Press. https://doi.org/10.1201/b22810-21 |