Educational strategies for teaching metabolic profiles across three endurance training zones.

IF 1.7 4区 教育学 Q2 EDUCATION, SCIENTIFIC DISCIPLINES Advances in Physiology Education Pub Date : 2025-06-01 Epub Date: 2025-01-14 DOI:10.1152/advan.00094.2024
Denise V Macedo, Bernardo N Ide
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Abstract

This article explores an innovative educational approach using a metabolic board designed to enhance understanding of muscle metabolism across three endurance training zones: Z1 (light intensity), Z2 (moderate intensity), and Z3 (intense/severe intensity). The aerobic threshold marks the transition from light to moderate domains and the anaerobic threshold separates moderate from intense domains, with both thresholds adapting to training. Exercises within each training zone elicit specific adaptive responses through distinct signaling pathways, but the metabolic profile induced remains relatively constant across these intensity domains. The assembly of the metabolic board is guided by interpretative questions derived from recent incremental exercise studies. By interacting with the board, students gain clear insights into the rationale for choosing between continuous and interval exercises. This interactive tool simplifies complex physiological processes into understandable components, clarifying the relationships among motor unit types and their metabolism and principal energy sources at each intensity level. By assembling the board, students demystify muscle metabolism as a continuum of responses crucial for sustaining various exercise intensities. This integration of theoretical knowledge with practical application empowers students and professionals to make informed decisions about training prescriptions, a critical element of training periodization.NEW & NOTEWORTHY Our pedagogical tool offers a unique and enriching learning experience. By active construction of a metabolic board using real data, focused on a predominance of a specific muscle fiber type and its metabolic characteristics across three ranges of exercise intensity domains, the tool promotes deep learning for sports science professionals.

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跨三个耐力训练区代谢特征教学策略。
本文探讨了一种创新的教育方法,即利用代谢板加深对三个耐力训练区肌肉代谢的理解:Z1(轻度强度)、Z2(中等强度)和 Z3(高强度/剧烈强度)。有氧阈值标志着从轻度到中度的过渡,而无氧阈值则将中度和高强度区分开来,这两个阈值都会随训练而调整。每个训练区内的运动都会通过不同的信号传导途径引起特定的适应性反应,但在这些强度区内所诱导的新陈代谢曲线相对恒定。新陈代谢板的组装以最近的增量运动研究中提出的解释性问题为指导。通过与代谢板的互动,学生可以清楚地了解在连续运动和间歇运动之间做出选择的理由。这一互动工具将复杂的生理过程简化为易于理解的组成部分,阐明了运动单位类型之间的关系,以及在每个强度水平下的新陈代谢和主要能量来源。通过组装电路板,学生可以将肌肉新陈代谢理解为对维持各种运动强度至关重要的连续反应。这种将理论知识与实际应用相结合的方法使学生和专业人员能够就训练处方做出明智的决定,而训练处方是训练周期化的关键要素。
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来源期刊
CiteScore
3.40
自引率
19.00%
发文量
100
审稿时长
>12 weeks
期刊介绍: Advances in Physiology Education promotes and disseminates educational scholarship in order to enhance teaching and learning of physiology, neuroscience and pathophysiology. The journal publishes peer-reviewed descriptions of innovations that improve teaching in the classroom and laboratory, essays on education, and review articles based on our current understanding of physiological mechanisms. Submissions that evaluate new technologies for teaching and research, and educational pedagogy, are especially welcome. The audience for the journal includes educators at all levels: K–12, undergraduate, graduate, and professional programs.
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Educational strategies for teaching metabolic profiles across three endurance training zones. Teaching pathological physiology of sepsis using a high-fidelity simulator. Premed pressure: examining whether premed students experience more academic stress compared to non-premeds. Randle cycle in practice: a student exercise to teach glucose and fatty acid metabolism in fasted, fed, and exercised states. Metabolic scaling: exploring the relation between metabolic rate and body size.
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