急性间歇性高头症对心血管和呼吸系统控制的影响
Conan L H Shing1, Scott F Thrall1, Megan L Lance1
1Centre for Heart, Lung, and Vascular Health, School of Health and Exercise Sciences, University of British Columbia, Kelowna, British Columbia, Canada.
Journal of applied physiology (Bethesda, Md. : 1985)
|April 21, 2025
概括
在没有缺氧的情况下,间歇性高头 (IHc) 在人体中会增加平均动脉压超过30分钟. 这项研究表明,IHc显著影响血压调节,但不影响通风.
科学领域:
- 心血管生理学心血管生理学
- 呼吸系统生理学 呼吸系统生理学
- 神经可塑性 神经可塑性
背景情况:
- 急性间歇性血液气体干扰诱导心肺神经可塑性.
- 间歇性超膜缺氧会导致通风,交感活动和血压持续增加.
- 间歇性高头 (IHc) 单独对人类心肺呼吸系统控制的影响尚不清楚.
研究的目的:
- 调查急性IHc对人体通风,血压和四肢血管导电性的长期影响,独立于缺氧.
- 为了确定IHc是否会导致心肺呼吸系统参数持续变化.
主要方法:
- 24名健康参与者接受了40分钟的IHc或室内空气控制,使用潮强迫.
- 分钟通风率 (V·e) 和平均动脉压 (MAP) 连续测量.
- 在30分钟的康复期内,使用张力计囊造影来评估四肢血管导电性 (LVC).
主要成果:
- 与对照组相比,IHc在30分钟的恢复期内没有显著改变通风.
- 在IHc暴露后的30分钟内,平均动脉压 (MAP) 显著升高.
- 肢体血管导电性 (LVC) 在整个康复期内在IHc和对照组都减少.
结论:
- 人类的急性间歇性高头,当独立于缺氧时,导致平均动脉压的长期促进.
- IHc对微型通风的持续影响很小.
- 这些发现增强了对动脉血液气体波动如何影响心血管控制和神经可塑性的理解.
更多相关视频
相关概念视频
Acute Respiratory Failure-III
145
Hypercapnic respiratory failure, also known as Type 2 or ventilatory respiratory failure, is a severe condition characterized by the body's inability to effectively remove carbon dioxide (CO2) from the bloodstream. It leads to an arterial CO2 pressure (PaCO2) exceeding 45 mmHg and a blood pH above 7.35. This situation indicates that the body's ventilatory demand, or the ventilation needed to maintain normal PaCO2 levels, surpasses its supply or the maximum gas flow achievable without...
145
Hyperpnea and Hyperventilation
914
Hyperventilation refers to a higher-than-normal rate and depth of breathing, often associated with anxiety attacks. This excessive breathing surpasses the body's need to expel CO2, leading to a condition known as hypocapnia - an unusually low level of carbon dioxide in the blood. Hypocapnia can constrict cerebral blood vessels, reducing blood flow to the brain, which may result in dizziness or fainting. Early signs include tingling and muscle spasms in the hands and face, caused by falling...
914
Physiological Control of Respiration
1.7K
Introduction
Breathing, a seemingly passive process, is regulated by the respiratory center in the brainstem. This center coordinates the involuntary control of respirations, which means it occurs without conscious effort, ensuring a smooth and uninterrupted pattern.
Regulation of Ventilation
The body maintains ventilation by monitoring levels of carbon dioxide (CO2), oxygen (O2), and hydrogen ion concentration (pH) in the arterial blood. Among these factors, the level of CO2 plays a crucial...
Breathing, a seemingly passive process, is regulated by the respiratory center in the brainstem. This center coordinates the involuntary control of respirations, which means it occurs without conscious effort, ensuring a smooth and uninterrupted pattern.
Regulation of Ventilation
The body maintains ventilation by monitoring levels of carbon dioxide (CO2), oxygen (O2), and hydrogen ion concentration (pH) in the arterial blood. Among these factors, the level of CO2 plays a crucial...
1.7K
Chemical Factors Affecting Respiration Centers
933
Chemical factors such as changing CO2, O2, and H+ levels in arterial blood play a critical role in influencing respiration depth and rates. These variations are detected by chemoreceptors—specialized sensors located in two primary body areas. Central chemoreceptors are found throughout the brain stem, including the ventrolateral medulla, while peripheral chemoreceptors are located in the aortic arch and carotid arteries.
CO2 has a potent influence on respiration and is strictly regulated....
CO2 has a potent influence on respiration and is strictly regulated....
933
Alterations in Respiration II
778
There are numerous types of normal and abnormal respiration. Based on ventilatory movements, breathing patterns are classified as regular, deep, or shallow. Examples include Biot's breathing, Cheyne-Stokes respiration, Kussmaul's breathing, hyperventilation, and hypoventilation. Each pattern is clinically significant and aids in evaluating patients.
In Biot's breathing, the respiratory rate and depth are irregular, alternating between periods of deep gasping and apnea. Common causes...
In Biot's breathing, the respiratory rate and depth are irregular, alternating between periods of deep gasping and apnea. Common causes...
778
Acute Respiratory Failure-I
151
Acute respiratory failure is a condition characterized by the inability of the lungs to perform their primary function: gas exchange. This failure leads to insufficient oxygen levels (hypoxemia) in the blood, elevated carbon dioxide levels (hypercapnia), or both, causing critical impairment in organ function.
Definition: It is defined by specific criteria based on blood gas measurements. Hypoxemia happens when the partial pressure of oxygen (PaO2) falls below 60 mmHg. At the same time,...
Definition: It is defined by specific criteria based on blood gas measurements. Hypoxemia happens when the partial pressure of oxygen (PaO2) falls below 60 mmHg. At the same time,...
151


