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Effect of Magnesium Supplementation on Serum Magnesium and Lactic Acid in Athletes

Year 2025, Volume: 14 Issue: 4, 533 - 544, 30.10.2025
https://doi.org/10.22282/tojras.1767404

Abstract

The aim of this study was to investigate the effects of magnesium supplementation on serum magnesium and lactic acid levels in boxers. The study included 20 male athletes (experimental group: n=10; control group: n=10) with a mean age of 22.32 ± 4.21 years, operating in boxing clubs in Sakarya province. In the study, 250 mg magnesium citrate supplementation was administered daily to the experimental group during an 8-week strength training program. Body composition, serum magnesium level and blood lactate level measurements were performed on all participants as pre-test and post-test. The data were analyzed using two-way repeated measures analysis of variance (2x2 ANOVA) in the SPSS 26 program. According to the results of the study, a 2.79% increase in serum magnesium levels was observed in the experimental group, while a 2.74% decrease was observed in the control group. In addition, a 34.53% decrease in blood lactate levels was recorded in the experimental group, while a 49.31% increase was recorded in the control group. Group-time interaction was found to be statistically significant in terms of serum magnesium and blood lactate levels (p<0.05). These findings indicate that magnesium supplementation can reduce fatigue and increase athletic performance by maintaining biochemical balance during the training process.

References

  • Akbaş, D., & Kılınç, F. (2024). Effect of functional threshold trainings applied to junior elite cyclists on power and strength parameters. Turkish Journal of Sport and Exercise, 26(1), 76-85.
  • American College of Sports Medicine (ACSM). (2013). ACSM's guidelines for exercise testing and prescription (9th ed.). Lippincott Williams & Wilkins.
  • Aras, T. (2022). Erken cumhuriyet döneminde milli gurur ve ulus kimlik inşa sürecinde uluslararası sportif faaliyetler: 1930 Türkiye-SSCB arasında yapılan boks müsabakaları. Eğitim Bilim Toplum, 20(80), 55-73.
  • Arıkan, H., Sertel, M., & Gökdere, Z. Ş. (2025). Evaluation of musculoskeletal system in caregivers of rehabilitation patients: a cross-sectional study. Estüdam Halk Sağlığı Dergisi, 10(1), 94-104.
  • Balcı, A., Tortu, E., Kabak, B., Akınoğlu, B. (2020). Investigation of the body composition and maximal oxygen consumption capacity of elite boxing and wrestling athletes. Turkish Journal of Sport and Exercise, 22(3), 452-457.
  • Balık, Ö., & Çakır, E. (2024). The effect of two different recovery methods on muscle damage after high-ıntensity exercise. International Journal of Disabilities Sports and Health Sciences, 7(2), 282-289.
  • Banfi, G., Colombini, A., Lombardi, G., & Lubkowska, A. (2012). Metabolic markers in sports medicine. Advances in Clinical Chemistry, 56(1), 1–54.
  • Baranauskas, M., Tubelis, L., Stukas, R., Švedas, E., Samsonienė, L. & Karanauskienė, D. (2018a). Lıthuanıan olympıc basketball players’ nutrıtıon durıng the traınıng mezzo-cycles desıgned for strength traınıng. Baltic Journal of Sport & Health Sciences, 3(90), 3-10.
  • Başandaç, G., Barğı, G., & Bayrakcı Tunay, V. (2023). Elit sporcularda anaerobik kapasite, anaerobik güç, yorgunluk indeksi ve fonksiyonel performansın karşılaştırılması, Journal of Exercise Therapy and Rehabilitation, 10(1), 57-65.
  • Bektaş, M., & Müniroğlu, R. S. (2024). Determınatıon of the genetıc profıle of mct1 (slc16a1) gene a/t polymorphısm and gdf5 gene t/c polymorphısm related to connectıve tıssue and muscle ınjury rısk ın young athletes. Spormetre Beden Eğitimi ve Spor Bilimleri Dergisi, 22(2), 16-24.
  • Boutios, S., di Cagno, A., Buonsenso, A., Centorbi, M., Iuliano, E., Calcagno, G., & Fiorilli, G. (2022). Does the Type of Anaerobic Test Matter? A Comparison between the anaerobic ıntermittent kick test andwingate anaerobic test in taekwondo athletes. Sports, 10(154), 2-9.
  • Boz, E., Şipal, O., Safi, Z., & Ünlü, Y. (2023). Boksörlerin endişe ve mücadele düzeylerine ilişkin görüşlerinin incelenmesi: karma model araştırması. Uluslararası Bozok Spor Bilimleri Dergisi, 4(2), 1-12.
  • Brancaccio, P., Maffulli, N. & Limongelli, F. M. (2007). Creatine kinase monitoring in sport medicine. Br Med Bull. 81(82), 209-30.
  • Chu, A., Petocz, P., & Samman, S. (2018). Zinc status at baseline is not related to acute changes in serum zinc concentration following bouts of running or cycling. J Trace Elem Med Biol. 50(1), 105-110.
  • Chycki, J., Golas, A., Halz, M., Maszczyk, A., Toborek, M. & Zajac, A. (2018). Chronic ıngestion of sodium and potassium bicarbonate, with potassium, magnesium and calcium citrate ımproves anaerobic performance in elite soccer players. Nutrients, 10(11), 1-12.
  • Coudray, C., Rambeau, M., Feillet-Coudray, C., Gueux, E., Tressol, J. C., Mazur, A., & Rayssiguier, Y. (2005). Study of magnesium bioavailability from ten organic and inorganic Mg salts in Mg-depleted rats using a stable isotope approach. Magnesium Research, 18(4), 215–223.
  • Çakır, E. (2024). The effect of two different recovery methods on muscle damage. Herkes İçin Spor ve Rekreasyon Dergisi, 6(3), 300-305.
  • Çalap, O., & Alp, M. (2023). Investigation of the relationship of arm and leg volume with anaerobic power, balance and strength characteristics in elite judokas. CBÜ Beden Eğitimi ve Spor Bilimleri Dergisi, 18(2), 504-519.
  • Çöndü, A., Şener, O. A., & Alpa, Ş. (2018). Comparıson of anaerobıc power and vertıcal jump measurements of Tekvando and karate athletes. Turkish Journal of Sport and Exercise, 20(3), 301-304.
  • Długołęcka, B. & Jówko, E. (2022). Effects of weight-bearing and weight-supporting sports on bone mass in males. Polish Journal of Sport and Tourism, 29(3), 9-14.
  • Domínguez, R., López-Samanes, Á., & Mata-Ordoñez, F. (2018). Effects of magnesium supplementation on exercise performance. Journal of the International Society of Sports Nutrition, 15(1), 1-10.
  • Duygun, E. (2022). Ruh ve beden: acemi bir boksörün defterleri, Mülkiye Dergisi, 46(1), 315-321.
  • Elidemir, S., Bilge, M., & Yıldırım, D. S. (2022). Boksörlerde ip atlama ve çeviklik merdiveni egzersiz programının çeviklik performansına etkisinin karşılaştırılması. Aksaray University Journal of Sport and Health Researches, 3(2), 239-251.
  • Eraslan, U., Taşvuran Horata, E., Şenol, H., & Erel, S. (2025). Relationship of technology use to neck-upper extremity musculoskeletal problems and perceived fatigue. Sağlık Bilimlerinde Değer, 15(1), 7-14.
  • Erdemir, İ., & Kayhan, R. F. (2023). Geleneksel ve drop-set direnç antrenmanlarının kas hasarı üzerine etkisi. CBÜ Beden Eğitimi ve Spor Bilimleri Dergisi, 18(1), 181-192.
  • Erdoğmuş, T. N., Önlü, A. Ş., Çakan, E. & Aras, D. (2023). Aerobik, esneklik ve kuvvet egzersizlerinin serebral palsili çocuklar üzerindeki etkilerine yönelik bir derleme. Beden Eğitimi ve Spor Bilimleri Dergisi, 17(2), 147-178.
  • Eriş, F., Çakır, E., Sargın, K. & Çavuşoğlu, İ. (2023). Genç boks sporcularına uygulanan 10 haftalık bosu topu egzersizi eğitiminin statik dengeye etkisinin araştırılması. Akdeniz Spor Bilimleri Dergisi, 6(1), 593-603.
  • European Food Safety Authority (EFSA). (2015). Scientific opinion on dietary reference values for magnesium. EFSA Journal, 13(7), 4186.
  • Field, A. (2013). Discovering Statistics Using IBM SPSS Statistics (4th ed.). London: SAGE Publications.
  • Golf, S. W., Bender, S., & Grüttner, J. (1998). Magnesium orotate—experimental and clinical evidence. Magnesium Research, 11(2), 117–123.
  • Institute of Medicine (US) Panel on Micronutrients. (1997). Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. National Academies Press.
  • Kızılca, S., & Okut, S. (2024). The effect of dynamic warm-up exercise durations on different jump types in young male boxers. Turkish Journal of Sport and Exercise, 26(2), 236-244.
  • Kocahan, S., Dündar, A. & Yılmaz, Y. (2021). The effect of aerobic and anaerobic exercise on biochemical parameters in adolescent male athletes. Adıyaman University Journal of Health Sciences, 1(1), 14-19.
  • Koury, J. C., de Oliveira-Junior, A. V., Portugal, M. R. C., de Oliveira. K. J. F., & Donangelo, C. M. (2018). Bioimpedance parameters in adolescent athletes in relation to bone maturity and biochemical zinc indices. J Trace Elem Med Biol. 46(1), 26-31.
  • Kyle, U. G., Bosaeus, I., De Lorenzo, A. D., Deurenberg, P., Elia, M., Gómez, J. M. & Pichard, C. (2004). Bioelectrical impedance analysis—part I: review of principles and methods. Clinical nutrition, 23(5), 1226–1243.
  • Liu, S., Zhang, L. & Li, S. (2023). Advances in nutritional supplementation for sarcopenia management. Frontiers in Nutrition, 1(1), 1-14.
  • Nielsen, F. H., & Lukaski, H. C. (2006). Update on the relationship between magnesium and exercise. Magnesium Research, 19(3), 180–189.
  • Norton, K. I., Olds, T. S., Olive, S. & Dank, S. (1996). Ken and Barbie at Life Size. Sex Roles, 34(1), 287-294.
  • Nsengu-Tshibangu, A.M. (2024). Boxing practitioners physiology review: 3. dietary supplementation, weight control, recovery and altitude. Open Journal of Molecular and Integrative Physiology, 14(1), 1-29.
  • Pancar, S., & Yeniyol, B. (2023). Amatör boksörlerin bilişsel performanslarının incelenmesi, Gaziantep Üniversitesi Spor Bilimleri Dergisi, 8(1), 84-92.
  • Ratamess, N. A. (2012). ACSM’s foundations of strength training and conditioning. Wolters Kluwer Health/Lippincott Williams & Wilkins.
  • Razavi-Dehkordi, S.M. (2020). Effect of a period of magnesium supplementation on muscle strength and resistance of bodybuilders. Journal of Pharmaceutical Research International, 32(8), 12-21.
  • Sudijandoko, A., & Irawan, R. (2024). The preventive efficacy of selenium supplements on muscle soreness post heavy eccentric exercise. International Journal of Disabilities Sports And Health Sciences, 7(4), 859-866.
  • Şahinler, Y., & Ulukan, M. (2021). Investigation of psychological resilience levels of boxing sports. International Journal of Sport Culture and Science, 9(1), 79-90.
  • Şipal, Ö., & Kul, M. (2023). Sporcu eğitim merkezine bağlı yıldızlar kategorisi boksörlerine uygulanan 8 haftalık tabata antrenman protokolünün performansa etkisinin incelenmesi. Akdeniz Spor Bilimleri Dergisi, 6(3), 761-775.
  • Taati, B., Arazi, H., & Bridge, C. A., (2022). Franchini a new taekwondo-specific field test for estimating aerobic power, anaerobic fitness, and agility performance. PLoS One. 17(3), 1-16.
  • Tabachnick, B. G., & Fidell, L. S. (2019). Using Multivariate Statistics (7th ed.). Boston: Pearson.
  • Tarsitano, M.G., Quinzi, F., & Folino, K. (2024). Effects of magnesium supplementation on muscle soreness in different type of physical activities: a systematic review. J Transl Med, 22(1), 629-635.
  • Taştan, S., Ertören, H., & Topraklı, M. (2024b). Elit karatecilere uygulanan kompleks antrenmanlarının sıçrama, sürat ve maksimal kuvvet performansları üzerine etkisi. Kafkas Üniversitesi Spor Bilimleri Dergisi, 4(1), 1-11.
  • Tayech, A., Mejri, M. A., Chaouachi, M., Chaabene, H., Hambli, M., Brughelli, M., Behm, D. G., & Chaouachi, A. (2020). Taekwondo anaerobic intermittent kick test: Discriminant validity and an update with the gold-standard wingate test. J Hum Kinet. 71(1), 229–42.
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Sporcularda Magnezyum Takviyesinin Serum Magnezyum ve Laktik Asit Üzerine Etkisi

Year 2025, Volume: 14 Issue: 4, 533 - 544, 30.10.2025
https://doi.org/10.22282/tojras.1767404

Abstract

Bu araştırmanın amacı, magnezyum takviyesinin boksörlerde serum magnezyum ve laktik asit düzeylerine etkisini incelemektir. Çalışmaya, Sakarya ilindeki boks kulüplerinde faaliyet gösteren, yaş ortalaması 22.32 ± 4.21 yıl olan 20 erkek sporcu (deney grubu: n=10; kontrol grubu: n=10) katılmıştır. Araştırmada, 8 haftalık kuvvet antrenman programı süresince deney grubuna günlük 250 mg magnezyum sitrat takviyesi uygulanmıştır. Tüm katılımcılara ön test ve son test olacak şekilde vücut kompozisyonu, serum magnezyum düzeyi ve kan laktat seviyesi ölçümleri yapılmıştır. Veriler SPSS 26 programında iki yönlü tekrarlı ölçümler varyans analizi (2x2 ANOVA) ile analiz edilmiştir. Araştırma sonuçlarına göre, deney grubunda serum magnezyum düzeylerinde %2.79 oranında artış, kontrol grubunda ise %2.74 oranında azalma gözlenmiştir. Ayrıca, deney grubunun kan laktat düzeylerinde %34.53 oranında düşüş, kontrol grubunda ise %49.31 oranında artış kaydedilmiştir. Serum magnezyum ve kan laktat düzeyleri bakımından grup-zaman etkileşimi istatistiksel olarak anlamlı bulunmuştur (p<0.05). Bu bulgular, magnezyum takviyesinin antrenman sürecinde biyokimyasal dengeyi koruyarak yorgunluğu azaltabileceğini ve sportif performansı artırabileceğini göstermektedir.

References

  • Akbaş, D., & Kılınç, F. (2024). Effect of functional threshold trainings applied to junior elite cyclists on power and strength parameters. Turkish Journal of Sport and Exercise, 26(1), 76-85.
  • American College of Sports Medicine (ACSM). (2013). ACSM's guidelines for exercise testing and prescription (9th ed.). Lippincott Williams & Wilkins.
  • Aras, T. (2022). Erken cumhuriyet döneminde milli gurur ve ulus kimlik inşa sürecinde uluslararası sportif faaliyetler: 1930 Türkiye-SSCB arasında yapılan boks müsabakaları. Eğitim Bilim Toplum, 20(80), 55-73.
  • Arıkan, H., Sertel, M., & Gökdere, Z. Ş. (2025). Evaluation of musculoskeletal system in caregivers of rehabilitation patients: a cross-sectional study. Estüdam Halk Sağlığı Dergisi, 10(1), 94-104.
  • Balcı, A., Tortu, E., Kabak, B., Akınoğlu, B. (2020). Investigation of the body composition and maximal oxygen consumption capacity of elite boxing and wrestling athletes. Turkish Journal of Sport and Exercise, 22(3), 452-457.
  • Balık, Ö., & Çakır, E. (2024). The effect of two different recovery methods on muscle damage after high-ıntensity exercise. International Journal of Disabilities Sports and Health Sciences, 7(2), 282-289.
  • Banfi, G., Colombini, A., Lombardi, G., & Lubkowska, A. (2012). Metabolic markers in sports medicine. Advances in Clinical Chemistry, 56(1), 1–54.
  • Baranauskas, M., Tubelis, L., Stukas, R., Švedas, E., Samsonienė, L. & Karanauskienė, D. (2018a). Lıthuanıan olympıc basketball players’ nutrıtıon durıng the traınıng mezzo-cycles desıgned for strength traınıng. Baltic Journal of Sport & Health Sciences, 3(90), 3-10.
  • Başandaç, G., Barğı, G., & Bayrakcı Tunay, V. (2023). Elit sporcularda anaerobik kapasite, anaerobik güç, yorgunluk indeksi ve fonksiyonel performansın karşılaştırılması, Journal of Exercise Therapy and Rehabilitation, 10(1), 57-65.
  • Bektaş, M., & Müniroğlu, R. S. (2024). Determınatıon of the genetıc profıle of mct1 (slc16a1) gene a/t polymorphısm and gdf5 gene t/c polymorphısm related to connectıve tıssue and muscle ınjury rısk ın young athletes. Spormetre Beden Eğitimi ve Spor Bilimleri Dergisi, 22(2), 16-24.
  • Boutios, S., di Cagno, A., Buonsenso, A., Centorbi, M., Iuliano, E., Calcagno, G., & Fiorilli, G. (2022). Does the Type of Anaerobic Test Matter? A Comparison between the anaerobic ıntermittent kick test andwingate anaerobic test in taekwondo athletes. Sports, 10(154), 2-9.
  • Boz, E., Şipal, O., Safi, Z., & Ünlü, Y. (2023). Boksörlerin endişe ve mücadele düzeylerine ilişkin görüşlerinin incelenmesi: karma model araştırması. Uluslararası Bozok Spor Bilimleri Dergisi, 4(2), 1-12.
  • Brancaccio, P., Maffulli, N. & Limongelli, F. M. (2007). Creatine kinase monitoring in sport medicine. Br Med Bull. 81(82), 209-30.
  • Chu, A., Petocz, P., & Samman, S. (2018). Zinc status at baseline is not related to acute changes in serum zinc concentration following bouts of running or cycling. J Trace Elem Med Biol. 50(1), 105-110.
  • Chycki, J., Golas, A., Halz, M., Maszczyk, A., Toborek, M. & Zajac, A. (2018). Chronic ıngestion of sodium and potassium bicarbonate, with potassium, magnesium and calcium citrate ımproves anaerobic performance in elite soccer players. Nutrients, 10(11), 1-12.
  • Coudray, C., Rambeau, M., Feillet-Coudray, C., Gueux, E., Tressol, J. C., Mazur, A., & Rayssiguier, Y. (2005). Study of magnesium bioavailability from ten organic and inorganic Mg salts in Mg-depleted rats using a stable isotope approach. Magnesium Research, 18(4), 215–223.
  • Çakır, E. (2024). The effect of two different recovery methods on muscle damage. Herkes İçin Spor ve Rekreasyon Dergisi, 6(3), 300-305.
  • Çalap, O., & Alp, M. (2023). Investigation of the relationship of arm and leg volume with anaerobic power, balance and strength characteristics in elite judokas. CBÜ Beden Eğitimi ve Spor Bilimleri Dergisi, 18(2), 504-519.
  • Çöndü, A., Şener, O. A., & Alpa, Ş. (2018). Comparıson of anaerobıc power and vertıcal jump measurements of Tekvando and karate athletes. Turkish Journal of Sport and Exercise, 20(3), 301-304.
  • Długołęcka, B. & Jówko, E. (2022). Effects of weight-bearing and weight-supporting sports on bone mass in males. Polish Journal of Sport and Tourism, 29(3), 9-14.
  • Domínguez, R., López-Samanes, Á., & Mata-Ordoñez, F. (2018). Effects of magnesium supplementation on exercise performance. Journal of the International Society of Sports Nutrition, 15(1), 1-10.
  • Duygun, E. (2022). Ruh ve beden: acemi bir boksörün defterleri, Mülkiye Dergisi, 46(1), 315-321.
  • Elidemir, S., Bilge, M., & Yıldırım, D. S. (2022). Boksörlerde ip atlama ve çeviklik merdiveni egzersiz programının çeviklik performansına etkisinin karşılaştırılması. Aksaray University Journal of Sport and Health Researches, 3(2), 239-251.
  • Eraslan, U., Taşvuran Horata, E., Şenol, H., & Erel, S. (2025). Relationship of technology use to neck-upper extremity musculoskeletal problems and perceived fatigue. Sağlık Bilimlerinde Değer, 15(1), 7-14.
  • Erdemir, İ., & Kayhan, R. F. (2023). Geleneksel ve drop-set direnç antrenmanlarının kas hasarı üzerine etkisi. CBÜ Beden Eğitimi ve Spor Bilimleri Dergisi, 18(1), 181-192.
  • Erdoğmuş, T. N., Önlü, A. Ş., Çakan, E. & Aras, D. (2023). Aerobik, esneklik ve kuvvet egzersizlerinin serebral palsili çocuklar üzerindeki etkilerine yönelik bir derleme. Beden Eğitimi ve Spor Bilimleri Dergisi, 17(2), 147-178.
  • Eriş, F., Çakır, E., Sargın, K. & Çavuşoğlu, İ. (2023). Genç boks sporcularına uygulanan 10 haftalık bosu topu egzersizi eğitiminin statik dengeye etkisinin araştırılması. Akdeniz Spor Bilimleri Dergisi, 6(1), 593-603.
  • European Food Safety Authority (EFSA). (2015). Scientific opinion on dietary reference values for magnesium. EFSA Journal, 13(7), 4186.
  • Field, A. (2013). Discovering Statistics Using IBM SPSS Statistics (4th ed.). London: SAGE Publications.
  • Golf, S. W., Bender, S., & Grüttner, J. (1998). Magnesium orotate—experimental and clinical evidence. Magnesium Research, 11(2), 117–123.
  • Institute of Medicine (US) Panel on Micronutrients. (1997). Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. National Academies Press.
  • Kızılca, S., & Okut, S. (2024). The effect of dynamic warm-up exercise durations on different jump types in young male boxers. Turkish Journal of Sport and Exercise, 26(2), 236-244.
  • Kocahan, S., Dündar, A. & Yılmaz, Y. (2021). The effect of aerobic and anaerobic exercise on biochemical parameters in adolescent male athletes. Adıyaman University Journal of Health Sciences, 1(1), 14-19.
  • Koury, J. C., de Oliveira-Junior, A. V., Portugal, M. R. C., de Oliveira. K. J. F., & Donangelo, C. M. (2018). Bioimpedance parameters in adolescent athletes in relation to bone maturity and biochemical zinc indices. J Trace Elem Med Biol. 46(1), 26-31.
  • Kyle, U. G., Bosaeus, I., De Lorenzo, A. D., Deurenberg, P., Elia, M., Gómez, J. M. & Pichard, C. (2004). Bioelectrical impedance analysis—part I: review of principles and methods. Clinical nutrition, 23(5), 1226–1243.
  • Liu, S., Zhang, L. & Li, S. (2023). Advances in nutritional supplementation for sarcopenia management. Frontiers in Nutrition, 1(1), 1-14.
  • Nielsen, F. H., & Lukaski, H. C. (2006). Update on the relationship between magnesium and exercise. Magnesium Research, 19(3), 180–189.
  • Norton, K. I., Olds, T. S., Olive, S. & Dank, S. (1996). Ken and Barbie at Life Size. Sex Roles, 34(1), 287-294.
  • Nsengu-Tshibangu, A.M. (2024). Boxing practitioners physiology review: 3. dietary supplementation, weight control, recovery and altitude. Open Journal of Molecular and Integrative Physiology, 14(1), 1-29.
  • Pancar, S., & Yeniyol, B. (2023). Amatör boksörlerin bilişsel performanslarının incelenmesi, Gaziantep Üniversitesi Spor Bilimleri Dergisi, 8(1), 84-92.
  • Ratamess, N. A. (2012). ACSM’s foundations of strength training and conditioning. Wolters Kluwer Health/Lippincott Williams & Wilkins.
  • Razavi-Dehkordi, S.M. (2020). Effect of a period of magnesium supplementation on muscle strength and resistance of bodybuilders. Journal of Pharmaceutical Research International, 32(8), 12-21.
  • Sudijandoko, A., & Irawan, R. (2024). The preventive efficacy of selenium supplements on muscle soreness post heavy eccentric exercise. International Journal of Disabilities Sports And Health Sciences, 7(4), 859-866.
  • Şahinler, Y., & Ulukan, M. (2021). Investigation of psychological resilience levels of boxing sports. International Journal of Sport Culture and Science, 9(1), 79-90.
  • Şipal, Ö., & Kul, M. (2023). Sporcu eğitim merkezine bağlı yıldızlar kategorisi boksörlerine uygulanan 8 haftalık tabata antrenman protokolünün performansa etkisinin incelenmesi. Akdeniz Spor Bilimleri Dergisi, 6(3), 761-775.
  • Taati, B., Arazi, H., & Bridge, C. A., (2022). Franchini a new taekwondo-specific field test for estimating aerobic power, anaerobic fitness, and agility performance. PLoS One. 17(3), 1-16.
  • Tabachnick, B. G., & Fidell, L. S. (2019). Using Multivariate Statistics (7th ed.). Boston: Pearson.
  • Tarsitano, M.G., Quinzi, F., & Folino, K. (2024). Effects of magnesium supplementation on muscle soreness in different type of physical activities: a systematic review. J Transl Med, 22(1), 629-635.
  • Taştan, S., Ertören, H., & Topraklı, M. (2024b). Elit karatecilere uygulanan kompleks antrenmanlarının sıçrama, sürat ve maksimal kuvvet performansları üzerine etkisi. Kafkas Üniversitesi Spor Bilimleri Dergisi, 4(1), 1-11.
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There are 57 citations in total.

Details

Primary Language Turkish
Subjects Sports Training, Exercise Physiology, Sports Nutrition
Journal Section Research Articles
Authors

Mustafa Çavdar 0009-0004-3624-8777

Nehir Yalçınkaya 0000-0001-6957-668X

Malik Beyleroğlu 0000-0002-8788-2864

Publication Date October 30, 2025
Submission Date August 17, 2025
Acceptance Date October 23, 2025
Published in Issue Year 2025 Volume: 14 Issue: 4

Cite

Vancouver Çavdar M, Yalçınkaya N, Beyleroğlu M. Sporcularda Magnezyum Takviyesinin Serum Magnezyum ve Laktik Asit Üzerine Etkisi. TOJRAS. 2025;14(4):533-44.