对精英短跑划手的生理洞察:揭示成绩动态和训练意义

Suchishrava Dubey, P. Choudhary
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摘要

研究目的本研究旨在调查精英运动员的生理反应与冲刺划桨成绩之间的关系,重点关注心肺反应、代谢效率和能量利用模式。材料和方法本研究精心挑选了来自印度不同地区的 20 名精英短跑运动员。采用标准化方案和尖端测量技术对心肺反应、新陈代谢效率和能量利用模式进行了详细评估。对运动员的个体差异进行了仔细记录。结果研究显示,运动员之间存在明显的同质性,这反映了严格的训练标准。不过,也出现了一些耐人寻味的个体差异,尤其是在心肺反应方面。神经反应敏捷、善于适应代谢性酸中毒的运动员整体表现更佳,这表明神经系统和高效呼吸机制在优化划手能力方面发挥着关键作用。对二氧化碳排放量和乳酸盐浓度的分析表明,能量利用模式均衡,无氧代谢和呼吸反应最佳。平衡无氧乳酸和乳酸盐能力是关键所在。结论。研究结果强调,需要制定有针对性的训练计划,充分利用个体差异,增强神经适应能力和代谢性酸中毒耐受力,并优化能量途径。这些变革性的见解为教练、运动科学家和运动员提供了宝贵的工具来提高成绩。这项研究丰富了我们对短跑划桨的理解,是研究精英运动表现的范例,为未来的运动科学和教练工作提供了指导。未来的研究方向包括探索量身定制的训练干预措施的长期影响、调查心肺反应的分子机制以及研究运动表现的心理方面。不同体育学科之间的比较研究有望为精英运动员的运动表现提供普遍的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological Insights into Elite Sprint Paddlers: Unravelling Performance Dynamics and Training Implications
Study purpose. This study aimed to investigate the relationship between physiological reactivity and sprint paddling performance among elite athletes, focusing on cardiorespiratory responses, metabolic efficiency, and energy utilization patterns. Materials and methods. A group of N= 20 elite sprint paddlers from various regions in India was meticulously selected for this study. Detailed assessments of cardiorespiratory responses, metabolic efficiency, and energy utilization patterns were conducted using standardized protocols and cutting-edge measurement techniques. Individual differences among athletes were carefully documented. Results. The study revealed a remarkable homogeneity among the athletes, reflecting stringent training standards. However, intriguing individual differences emerged, particularly in cardiorespiratory reactivity. Athletes with swift neural responses and adept metabolic acidosis adaptation showcased enhanced overall performance, indicating the critical role of the nervous system and efficient respiratory mechanisms in optimizing paddlers’ capabilities. Analysis of CO2 emissions and lactate concentrations indicated a balanced energy utilization pattern and optimal anaerobic metabolism and respiratory responses. Balancing anaerobic alactate and lactate capacities emerged as pivotal. Conclusions. The findings underscore the need for targeted training programs that leverage individual differences, enhance neural adaptations, and metabolic acidosis tolerance, and optimize energy pathways. These transformative insights offer coaches, sports scientists, and athletes valuable tools to elevate performance outcomes. The study enriches our understanding of sprint paddling and serves as a paradigm for studying elite athletic performance, guiding the future of sports science and coaching. Future research avenues include exploring the long-term impact of tailored training interventions, investigating molecular mechanisms of cardiorespiratory reactivity, and studying psychological aspects of athletic performance. Comparative studies across diverse sports disciplines promise universal insights into elite athletic performance.
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