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Evaluation of Cardiovascular Stress Reaction Using HPCD Method on a Beat-by-beat Basis

机译:基于心跳的HPCD方法评估心血管应激反应

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In order to establish a bionic model/system in cardiovascular fields, comprehension of hemodynamics is important. In this study, a novel beat-by-beat hemodynamic system evaluation method named “beat-by-beat HPCD method” is proposed and evaluated. Gregg’s theoretically driven model of hemodynamics which was called “HPCD method” is improved by using non-invasive and beat-by-beat cardiovascular measurement of mean blood pressure and cardiac output. Continuous beat-by-beat measurements of MBP and CO were done on three healthy male subjects during three hours. In the measurement, a five minutes cold pressor test was executed in each subject and also each subject did exercise using a bicycle ergometer in five minutes and walked during 15 minutes. Measured beat-by-beat MBP and CO can derive beat-by-beat HP (hemodynamic profile) and CO (compensation deficit). Then, beat-by-beat changes clearly observed from plots on HP axis and CD axis plane. More vascular response can be observed on cold pressor and more myocardial response can be observed on ergometer exercise. During walking period, the response is intermediate between cold pressor and ergometer exercise. Finally, the proposed method can be considered as applicable to evaluate cardiovascular bionic system especially on evaluation of a person being subjected to stress.
机译:为了在心血管领域建立仿生模型/系统,对血流动力学的理解很重要。在这项研究中,提出并评估了一种新的逐搏血液动力学系统评估方法,称为“逐搏HPCD方法”。 Gregg的理论驱动的血流动力学模型被称为“ HPCD方法”,通过使用平均血压和心输出量的无创和逐次心血管测量来改进。在三小时内对三名健康男性受试者进行了MBP和CO的连续搏动测量。在测量中,对每个受试者进行五分钟的冷加压试验,并且每个受试者在五分钟内使用自行车测功计进行运动并在十五分钟内行走。逐搏测量的MBP和CO可以得出逐搏HP(血流动力学曲线)和CO(补偿不足)。然后,从HP轴和CD轴平面上的图可以清楚地观察到逐拍变化。在冷压器上可以观察到更多的血管反应,而在测力计运动下可以观察到更多的心肌反应。在步行期间,反应介于冷压机和测力计运动之间。最后,所提出的方法可以被认为适用于评估心血管仿生系统,特别是在评估承受压力的人时。

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