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相关概念视频

Exercise and Muscle Performance01:27

Exercise and Muscle Performance

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Exercise induces a range of adaptations in muscle tissue, depending on the type and duration of activity. Such physical training can be broadly categorized into two types: endurance exercises and resistance exercises.
Endurance exercises
Endurance exercises involve running, swimming, or cycling, which require repetitive movements with low force output. When a person engages in endurance exercise, a few noticeable changes occur in their skeletal muscles. For instance, the number of capillaries...
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Regulation of Metabolism01:19

Regulation of Metabolism

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Cellular needs and conditions vary from cell to cell and change within individual cells over time. For example, the required enzymes and energetic demands of stomach cells are different from those of fat storage cells, skin cells, blood cells, and nerve cells. Furthermore, a digestive cell works much harder to process and break down nutrients during the time that closely follows a meal compared with many hours after a meal. As these cellular demands and conditions vary, so do the amounts and...
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Metabolic Rate

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The human body is a powerhouse of energy, with every cell performing numerous functions that require energy. This energy production and consumption is measured by the metabolic rate, which quantifies the total heat generated by all the body's chemical reactions and mechanical work. This measurement helps to determine the rate of kilocalorie (kcal) consumption needed to fuel all ongoing activities.
The Basal Metabolic Rate (BMR) measures the energy expended at rest.
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Exercise significantly impacts cardiovascular response, which is crucial for understanding patient health and designing effective treatment plans.
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Metabolic States of the Body: The Postabsorptive State01:18

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The postabsorptive state usually starts about four hours after a meal and lasts until the next meal is eaten. During this time, the digestive system stops absorbing nutrients, and the body uses stored energy reserves to maintain stable blood glucose levels.
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Overview
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多层次的新陈代谢适应运动训练.

Tzachi Knaan1, Eylam Ziv-Av1, Gal Dubnov-Raz2

  • 1Department of Health Promotion, School of Public Health, Faculty of Medicine and Health Sciences, and Sylvan Adams Sports Institute, Tel-Aviv University, Tel‑Aviv, Israel.

Communications medicine
|March 12, 2026
PubMed
概括

有氧运动训练会触发能量补偿,限制体重减轻. 身体减少了休息代谢,提高了运动效率,抵消了卡路里燃烧.

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科学领域:

  • 运动生理学 运动生理学
  • 代谢适应 代谢适应
  • 身体构成 身体构成

背景情况:

  • 运动训练通常会导致体重减轻比预期的少,这种现象被称为运动诱导的能量补偿.
  • 驱动这种补偿的精确生理和行为机制仍然不完全理解.

研究的目的:

  • 量化对监督有氧运动训练计划的代谢和行为补偿反应.

主要方法:

  • 16名超重,久坐不动的成年人接受了为期12周的有氧步行干预.
  • 使用双重标记的水测量了每天的总能量消耗;整个房间的热量计评估了新陈代谢率 (休息和睡眠) 和饮食诱导的热生成.
  • 磁共振成像量化了器官体积,而客观监测跟踪了身体活动和标准化的评估评估了行走经济.

主要成果:

  • 有氧运动训练导致了显著的能量补偿,导致体重减轻最小,但改善了身体组成.
  • 休息代谢率 (RMR) 和睡眠代谢率 (SMR) 的降低构成了主要的补偿机制.
  • 肝脏和脏的体积减少,步行经济改善,中度至强度的体力活动比预期的少.

结论:

  • 通过有氧运动训练激活的补偿生理和行为机制限制了整体能量消耗.
  • 基本代谢的降低,运动效率的提高,以及代谢活跃器官的适应性重塑,共同限制了运动诱导的体重减轻.