Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:23-26. doi: 10.1109/EMBC46164.2021.9629718.
The blood pressure (BP) cuff can be used to modulate blood flow and propagation of pressure pulse along the artery. In our previous work, we researched methods to adapt cuff modulation techniques for pulse transit time vs. BP calibration and for measurement of other hemodynamic indices of potential interest to critical care, such as arterial compliance. A model characterized the response of the vasculature located directly under the cuff, but assumed that no significant changes occur in the distal vasculature.This study has been tailored to gain insights into the response of distal BP and pulse transit time to cuff inflation. Invasive BP data collected downstream from the cuff demonstrates that highly dynamic processes occur in the distal arm during cuff inflation. Mean arterial pressure increases in the distal artery by up to 20 mmHg, leading to a decrease in pulse transit time of up to 20 ms. Clinical Relevance: Such significant changes need to be taken into account in order to improve non-invasive BP estimations and to enable inference of other hemodynamic parameters from vasculature response to cuff inflation. A simple model is developed in order to reproduce the observed behaviors. The lumped-parameter model demonstrates opportunities for cuff modulation measurements which can reveal information on parameters such as systemic resistance, distal arterial, venous compliances and artery-vein interaction.
血压袖带可用于调节血流和沿动脉传播的压力脉冲。在我们之前的工作中,我们研究了将袖带调制技术应用于脉搏传导时间与血压校准的方法,以及测量其他可能对重症监护有意义的血流动力学指标,如动脉顺应性。该模型描述了位于袖带正下方的血管的响应,但假设袖带远端的血管没有明显变化。本研究旨在深入了解袖带充气对远端血压和脉搏传导时间的响应。从袖带下游采集的有创血压数据表明,袖带充气过程中远端手臂会发生高度动态的过程。远端动脉的平均动脉压增加高达 20 毫米汞柱,导致脉搏传导时间减少高达 20 毫秒。临床相关性:为了改善非侵入性血压估计并能够从血管对袖带充气的反应推断其他血流动力学参数,需要考虑到这些显著变化。为了再现观察到的行为,开发了一个集中参数模型。该集中参数模型展示了袖带调制测量的机会,这些测量可以提供有关系统阻力、远端动脉、静脉顺应性和动脉-静脉相互作用等参数的信息。