低血清铁蛋白是国际级女子游泳运动员营养不足的指标

L. Petrov, M. Kachaunov, A. Alexandrova
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摘要

导言:缺铁是运动员的一个常见特征,优化铁含量可能成为提高运动成绩的一个促进因素。目的:本研究旨在评估体内铁储存量及其与运动成绩的关系。研究还寻求游泳运动员的血液学、荷尔蒙、人体测量和功能状态与其运动成绩之间的相关性。研究方法研究涉及保加利亚国家游泳队的 19 名运动员(11 名女性和 8 名男性)。他们在自行车测力计上进行了最大有氧能力测试,并采集了血液样本以确定铁的状况以及血液和激素指标。他们的游泳成绩(游泳积分)按其在相应项目的世界纪录中所占的百分比进行评估。结果女性和男性游泳运动员的无界铁结合能力(UIBC)和铁蛋白在统计学上存在显著差异。女性的无界铁结合能力越高,表明她们体内的铁含量越低。在女性游泳运动员中,有 5 人的铁蛋白水平低于 40 纳克/毫升。在女性游泳运动员中,游泳积分与铁蛋白浓度之间存在高度可靠的相关性(r = .68)。所有男性游泳运动员的铁蛋白值都高于 40 纳克/毫升,铁蛋白浓度与游泳得分之间没有可靠的相关性,这可能是因为铁蛋白处于最佳范围,不再是影响成绩的重要因素。结论:游泳运动员的最佳血清铁蛋白浓度可能在 40-90 纳克/毫升之间。许多女游泳运动员相对缺铁,铁蛋白值低于最佳值。在竞技女游泳运动员中,低铁蛋白水平是缺铁和饮食不足的指标。可以预期,对铁蛋白值低的运动员进行适当的营养调理,既能补充铁储存,又能增加肌肉质量,最终提高运动成绩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE LOW SERUM FERRITIN AS AN INDICATOR OF INADEQUATE NUTRITION IN INTERNATIONAL-LEVEL FEMALE SWIMMER
Introduction: Iron deficiency is a common feature in athletes, and optimizing iron levels may become a contributing factor to improved athletic performance. Purpose: This study aimed to evaluate body iron stores and their relationship with sports performance. It also sought correlations between the swimmers’ hematological, hormonal, anthropometric, and functional status and their sports achievements. Methodology: The research involved 19 athletes (11 women and 8 men) from the Bulgarian national swimming team. They were tested for maximal aerobic capacity on a cycle ergometer and had blood samples taken to determine iron status and hematological and hormonal markers. Their swimming achievements (Swimming points) were evaluated as a percentage of the world records in the respective discipline. Results: There were statistically significant differences between the female and male swimmers for Unbound Iron Binding Capacity (UIBC) and ferritin. A higher UIBC in women indicated lower iron levels in them. Among female swimmers, five had ferritin levels below 40 ng/mL. In women, a highly reliable correlation between the Swimming points and ferritin concentration (r = .68) was observed. All male swimmers had ferritin values above 40 ng/mL, and there was no reliable correlation between ferritin concentration and Swimming points, probably because ferritin was in the optimal range and is no longer a significant performance factor. Conclusions: In swimmers, the optimal serum ferritin concentration is probably in the range of 40–90 ng/mL. Many female swimmers have a relative iron deficiency with sub-optimal ferritin values. In competitive female swimmers, low ferritin level is an indicator of both iron deficiency and inadequate diet. It can be expected that an adequate nutritional regime in athletes with low ferritin values will lead both to the replenishment of iron stores and to an increase in muscle mass and, ultimately, to an improvement in sports performance.
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