胸部温度和生理负荷指标之间的动态相关性,以及在增量自行车运动过程中过度运动后的氧气消耗
Songzi Cui1,2, Ning Du1,2, Zhongqian Liu2
1Department of Orthopaedics, Fourth Medical Centre of Chinese PLA General Hospital, Beijing, China.
Frontiers in physiology
|September 26, 2025
概括
胸部温度,通过红外热谱测量,准确地反映了运动强度和代谢变化. 这种新型标志物显示出非侵入性监测运动负载和恢复的潜力.
科学领域:
- 运动生理学 运动生理学
- 生物医学工程 生物医学工程
- 热像应用 热像应用
背景情况:
- 了解对运动的生理反应对于训练优化和健康至关重要.
- 监测运动强度和恢复的非侵入性方法非常受欢迎.
- 红外热学 (IRT) 为评估体力运动期间的生理变化提供了一个潜在的工具.
研究的目的:
- 在增量循环过程中调查胸部温度和生理负载指标之间的动态关系.
- 探索胸部温度和运动后过量氧气消耗 (EPOC) 之间的关联.
- 评估胸部温度作为运动负荷和恢复的非侵入性标记物的潜力.
主要方法:
- 使用高采样率红外热学 (IRT) 来测量胸部温度分布.
- 参与者进行了增量循环测试,直到疲.
- 同时测量氧气消耗 (VO2),血液乳酸,外部负荷,并计算温度.
主要成果:
- 在增加和VO2,血乳酸和外部负载 (R2 > 0.7) 之间观察到显著的正相关性.
- 个别分析证实了和这些生理标记之间的强烈关联 (r > 0.69).
- 胸部温度度在康复期间与EPOC有显著的关联,尽管存在个体间的变化.
结论:
- 胸部温度动力学反映了运动诱导的代谢变化.
- 这种度衡量部分解释了运动后的恢复过程.
- 胸部温度值显示为一种新的,非侵入性标志物,用于监测运动负载和恢复.
更多相关视频
相关概念视频
Exercise and Cardiovascular Response
3.9K
Exercise significantly impacts cardiovascular response, which is crucial for understanding patient health and designing effective treatment plans.
Light to moderate physical activity initiates a series of interconnected responses in the body. The heart rate modestly increases in anticipation of the workout, followed by widespread vasodilation as oxygen consumption by skeletal muscles increases. This results in decreased peripheral resistance, increased capillary blood flow, and accelerated...
Light to moderate physical activity initiates a series of interconnected responses in the body. The heart rate modestly increases in anticipation of the workout, followed by widespread vasodilation as oxygen consumption by skeletal muscles increases. This results in decreased peripheral resistance, increased capillary blood flow, and accelerated...
3.9K
Correlation between ECG and Cardiac Cycle
11.7K
The electrical signals recorded on an electrocardiogram (ECG) occur before the mechanical processes of contraction and relaxation during the cardiac cycle.
A cardiac action potential originates in the SA node and spreads throughout the atria and the AV node in approximately 0.03 seconds. This results in the P wave in an ECG and triggers atrial contraction. The action potential is then briefly slowed at the AV node, allowing the atria to contract and fill the ventricles with blood before...
A cardiac action potential originates in the SA node and spreads throughout the atria and the AV node in approximately 0.03 seconds. This results in the P wave in an ECG and triggers atrial contraction. The action potential is then briefly slowed at the AV node, allowing the atria to contract and fill the ventricles with blood before...
11.7K
Exercise and Cardiac Output
1.8K
Regular physical activity is essential for maintaining cardiovascular health, with aerobic exercises being particularly effective. According to the American Heart Association, 150 minutes of moderate to intense aerobic exercise per week is recommended for a healthy heart. Aerobic activities may include brisk walking, running, bicycling, cross-country skiing, and swimming, ideally performed three to five times per week.
Sustained exercise increases the muscles' oxygen demand, which can be...
Sustained exercise increases the muscles' oxygen demand, which can be...
1.8K
Factors Influencing Heart Rate
6.1K
The heart rate, or pulse rate, is a vital indicator of cardiovascular health. It reflects the number of times the heart beats per minute. Various physiological and environmental factors influence heart rate, increasing or decreasing cardiac output. Understanding these factors is crucial for assessing heart function and identifying potential health issues.
Let us explore the significant factors affecting heart rate, including age, body temperature, posture, acute pain, chemical influences,...
Let us explore the significant factors affecting heart rate, including age, body temperature, posture, acute pain, chemical influences,...
6.1K
Cardiac Output I:Effect of Heart Rate on Cardiac Output
2.4K
Cardiac Output
Cardiac output (CO) refers to the total amount of blood ejected by one of the ventricles in liters per minute (L/min). In a resting adult, CO ranges from 5 to 6 L/min, adjusting according to the body's metabolic requirements.
Effect of Heart Rate on Cardiac Output
Cardiac output adapts to metabolic demands during stress, physical activity, or illness. The autonomic nervous system regulates heart rate via the sinoatrial node. The parasympathetic nervous system decreases heart...
Cardiac output (CO) refers to the total amount of blood ejected by one of the ventricles in liters per minute (L/min). In a resting adult, CO ranges from 5 to 6 L/min, adjusting according to the body's metabolic requirements.
Effect of Heart Rate on Cardiac Output
Cardiac output adapts to metabolic demands during stress, physical activity, or illness. The autonomic nervous system regulates heart rate via the sinoatrial node. The parasympathetic nervous system decreases heart...
2.4K
Respiratory Capacities
1.4K
Respiratory capacities are crucial indicators of lung function, representing the maximum amount of air an individual's respiratory system can handle during various breathing phases.
One key metric is the Inspiratory Capacity (IC), which represents the maximum amount of air that can be inhaled with full effort. IC is calculated by summing the tidal volume and inspiratory reserve volume, typically ranging from 2.4 to 3.6 liters.
The Functional Residual Capacity (FRC) represents the air in the...
One key metric is the Inspiratory Capacity (IC), which represents the maximum amount of air that can be inhaled with full effort. IC is calculated by summing the tidal volume and inspiratory reserve volume, typically ranging from 2.4 to 3.6 liters.
The Functional Residual Capacity (FRC) represents the air in the...
1.4K


