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在老年和年轻健康个体的呼吸阈之间进行循环时的收缩和舒张功能。

Systolic and diastolic function during cycling at the respiratory threshold between elderly and young healthy individuals.

机构信息

Department of Medical Sciences and Public Health, SportsPhysiologyLaboratory, University of Cagliari, Via Porcell 4, 09124, Cagliari, Italy.

International PhD in Innovation Sciences and Technologies, University of Cagliari, Cagliari, Italy.

出版信息

Sci Rep. 2022 Mar 9;12(1):3825. doi: 10.1038/s41598-022-07933-7.

Abstract

The hemodynamic consequences of aging have been extensively investigated during maximal incremental exercise. However, less is known about the effects of aging on hemodynamics during submaximal steady-state exercise. The aim of the present investigation was to compare the hemodynamics of healthy elderly and young subjects during an exercise bout conducted at the gas threshold (GET) intensity. Two groups of healthy, physically active subjects were studied: the elderly group-EG (n = 11; > 60 years old) and the young group-YG (n = 13; < 35 years old). Both groups performed a 5-min rectangular exercise test at the GET intensity. Hemodynamics were measured using echocardiography. The main finding was that stroke volume responses were higher in the YG than the EG (72.5 ± 16.7 vs. 52.4 ± 8.4 ml, respectively). The increased stroke volume capacity in the YG was the consequence of a greater capacity to increase cardiac preload and contractility and, to a lesser extent, to reduce systemic vascular resistance. Importantly, the atrial contribution to ventricular diastolic filling was substantially higher in the YG when compared to the EG.

摘要

在最大增量运动期间,广泛研究了衰老对血液动力学的影响。然而,关于衰老对亚最大稳态运动期间血液动力学的影响知之甚少。本研究的目的是比较健康老年人和年轻人在气体阈值(GET)强度下进行运动时的血液动力学。研究了两组健康、活跃的受试者:老年组(EG)(n=11;>60 岁)和年轻组(YG)(n=13;<35 岁)。两组均以 GET 强度进行 5 分钟的矩形运动测试。使用超声心动图测量血液动力学。主要发现是,在 YG 中的每搏量反应高于 EG(分别为 72.5±16.7 与 52.4±8.4ml)。YG 中每搏量增加的能力是由于其增加心脏前负荷和收缩力的能力更强,而降低全身血管阻力的能力较弱。重要的是,与 EG 相比,YG 中的心房对心室舒张充盈的贡献明显更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ea4/8907329/266047ce5c86/41598_2022_7933_Fig1_HTML.jpg

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