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Assessment of conduit artery vasomotion using photoplethysmography

机译:使用光体积描记法评估导管动脉血管运动

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Vasomotion is a spontaneous oscillation of vascular tone. The phenomenon has been observed in small arterioles and capillaries as well as in the large conduit arteries. The layer of smooth muscle cells that surrounds a blood vessel can spontaneously and periodically change its tension and thereby the arterial wall stiffness also changes. As the understanding of the phenomenon is still rather obscure, researchers would benefit from a low-cost and reliable investigation technique such as photoplethysmography (PPG). PPG is an optical blood pulsation measurement technique that can offer substantial information about the arterial stiffness. The aims of this pilot study were to evaluate the usefulness of the PPG technique in the research of vasomotion and to investigate vasomotion in the relatively large conduit arteries. Continuous 15 minute long measurements of posterior tibial artery wall stiffness were taken. Artery diameter, electrocardiogram, blood pressure and respiration were also simultaneously registered. Fast Fourier Transform power spectra were calculated to identify unique stiffness oscillations that did not correspond to fluctuations in the systemic parameters and thus would indicate vasomotion. We concluded that photoplethysmography is a convenient method for the research of the vasomotion in large arteries. Local stiffness parameter b/a is more accurate to use and easier to measure than the pulse wave velocity which describes stiffness of a segment of an artery. Conduit arteries might exhibit a low amplitude high frequency vasomotion ( 9 to 27 cycles per minute). Low frequency vasomotion is problematic to distinguish from the passive oscillations imposed by the arterial pressure.
机译:血管运动是血管张力的自发性振荡。这种现象已在小动脉和毛细血管以及大导管动脉中观察到。围绕血管的平滑肌细胞层可以自发并周期性地改变其张力,从而使动脉壁的硬度也改变。由于对这种现象的理解还很模糊,因此研究人员将受益于低成本且可靠的调查技术,例如光体积描记法(PPG)。 PPG是一种光学血液脉动测量技术,可以提供有关动脉僵硬度的大量信息。这项初步研究的目的是评估PPG技术在血管运动研究中的有用性,并研究相对较大的导管动脉中的血管运动。连续15分钟长测量胫骨后动脉壁硬度。同时记录动脉直径,心电图,血压和呼吸。计算了快速傅立叶变换功率谱,以识别不对应于系统参数波动的独特刚度振荡,从而表明血管运动。我们得出的结论是,光电容积描记术是研究大动脉血管运动的便捷方法。局部刚度参数b / a比描述动脉段刚度的脉搏波速度更准确,更易于使用和测量。导管动脉可能表现出低幅度的高频血管运动(每分钟9到27个周期)。低频血管运动难以区分动脉压所施加的被动振荡。

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