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Integrated device for the measurement of systemic and local oxygen transport during physical exercise

机译:体育锻炼期间系统和局部氧气输送的集成装置

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Current methods for monitoring exercise exertion rely upon heart rate monitors, which represent a crude and lagging indicator of conditioning. The rationale for the present study is that both systemic and local metabolic mechanisms are responsible for physical performance, and therefore they should be simultaneously quantified to achieve an objective assessment of human conditioning. We propose a compact, wearable nearinfrared spectroscopy (NIRS) device integrated with electrocardiography (ECG) and photoplethysmography (PPG) to simultaneously assess the cardiovascular and local response to exercise. The system was tested on subjects performing a graded maximal exercise by comparing our readings with metabolic variables measured with respiratory gas analysis. We found strong correlations between local deoxyhemoglobin concentration [HHb], heart rate and oxygen uptake, as well as between oxyhemoglobin concentration [HbO2] and stroke volume. This study shows that combined NIRS, ECG and PPG measurements yield useful information to understand the interplay between systemic and local muscular responses to exercise.
机译:监测运动施加的目前的方法依赖于心率监测器,其代表了一种原油和滞留指示器的调理。本研究的基本原理是,全身和局部代谢机制均负责物理性能,因此应同时量化,以实现人类调理的客观评估。我们提出了一种紧凑,可穿戴的接近过的光谱学(NIRS)装置,与心电图(ECG)和光学质感(PPG)集成,同时评估心血管和局部响应运动。通过将我们的读物变量与呼吸气体分析测量的代谢变量进行比较来测试该系统对进行分级最大运动的受试者进行测试。我们发现局部脱氧血红蛋白浓度[HHB],心率和氧摄取之间的强烈相关,以及氧合血红蛋白浓度[HBO2]和中风体积。本研究表明,联合的NIR,ECG和PPG测量产生了有用的信息,以了解系统性和局部肌肉反应之间的相互作用。

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