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Cardiovascular reactivity stress and physical activity

机译:心血管反应压力和身体活动

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摘要

Psychological stress has been proposed as a major contributor to the progression of cardiovascular disease (CVD). Acute mental stress can activate the sympathetic-adrenal-medullary (SAM) axis, eliciting the release of catecholamines (NE and EPI) resulting in the elevation of heart rate (HR) and blood pressure (BP). Combined stress (psychological and physical) can exacerbate these cardiovascular responses, which may partially contribute to the elevated risk of CVD and increased proportionate mortality risks experienced by some occupations (e.g., firefighting and law enforcement). Studies have supported the benefits of physical activity on physiological and psychological health, including the cardiovascular response to acute stress. Aerobically trained individuals exhibit lower sympathetic nervous system (e.g., HR) reactivity and enhanced cardiovascular efficiency (e.g., lower vascular reactivity and decreased recovery time) in response to physical and/or psychological stress. In addition, resistance training has been demonstrated to attenuate cardiovascular responses and improve mental health. This review will examine stress-induced cardiovascular reactivity and plausible explanations for how exercise training and physical fitness (aerobic and resistance exercise) can attenuate cardiovascular responses to stress. This enhanced functionality may facilitate a reduction in the incidence of stroke and myocardial infarction. Finally, this review will also address the interaction of obesity and physical activity on cardiovascular reactivity and CVD.
机译:已经提出心理压力是导致心血管疾病(CVD)发展的主要因素。急性精神压力可以激活交感肾上腺髓质(SAM)轴,引起儿茶酚胺(NE和EPI)释放,导致心率(HR)和血压(BP)升高。压力(心理和身体上的)综合作用会加重这些心血管反应,这可能部分导致CVD风险升高以及某些职业(例如,消防和执法)所经历的成比例的死亡风险增加。研究支持体育锻炼对生理和心理健康的益处,包括对急性应激的心血管反应。有氧训练的个体响应于身体和/或心理压力而表现出较低的交感神经系统(例如HR)反应性和增强的心血管效率(例如较低的血管反应性和减少的恢复时间)。此外,阻力训练已被证明可减轻心血管反应并改善心理健康。这篇综述将研究压力引起的心血管反应性,并就运动训练和体适能(有氧运动和抵抗运动)如何减弱心血管对压力的反应做出合理的解释。这种增强的功能可以促进减少中风和心肌梗塞的发生。最后,本综述还将探讨肥胖与体力活动对心血管反应性和CVD的相互作用。

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